Cyhoeddiadau 2022
Abazajian, K. et al., 2022. Snowmass 2021 CMB-S4 White Paper. [Online].arXiv. (10.48550/arXiv.2203.08024 )Available at: http://arxiv.org/abs/2203.08024 . Abazajian, K. et al., 2022. Cmb-s4: forecasting constraints on primordial gravitational waves. Astrophysical Journal 926 (1) 54. (10.3847/1538-4357/ac1596 ) Abbott, R. et al., 2022. Narrowband searches for continuous and long-duration transient gravitational waves from known pulsars in the LIGO-Virgo third observing run. Astrophysical Journal 932 (2) 133. (10.3847/1538-4357/ac6ad0 ) Abbott, R. et al., 2022. Search for gravitational waves associated with gamma-ray bursts detected by Fermi and Swift during the LIGO-Virgo Run O3b. Astrophysical Journal 928 (2) 186. (10.3847/1538-4357/ac532b ) Abbott, R. et al., 2022. Search for intermediate-mass black hole binaries in the third observing run of Advanced LIGO and Advanced Virgo. Astronomy & Astrophysics 659 A84. (10.1051/0004-6361/202141452 ) Abbott, R. et al., 2022. All-sky, all-frequency directional search for persistent gravitational waves from Advanced LIGO's and Advanced Virgo's first three observing runs. Physical Review D 105 (12) 122001. (10.1103/PhysRevD.105.122001 ) Abbott, R. et al., 2022. Constraints on dark photon dark matter using data from LIGO's and Virgo's third observing run. Physical Review D 105 (6) 063030. (10.1103/PhysRevD.105.063030 ) Abbott, R. et al., 2022. Search for subsolar-mass binaries in the first half of advanced LIGO's and advanced Virgo's third observing run. Physical Review Letters 129 (6)(10.1103/PhysRevLett.129.061104 ) Abbott, R. et al., 2022. Search of the early O3 LIGO data for continuous gravitational waves from the Cassiopeia A and Vela Jr. supernova remnants. Physical Review D 105 (8) 082005. (10.1103/PhysRevD.105.082005 ) Abbott, R. et al., 2022. All-sky search for gravitational wave emission from scalar boson clouds around spinning black holes in LIGO O3 data. Physical Review D 105 (10) 102001. (10.1103/PhysRevD.105.102001 ) Abbott, R. et al., 2022. First joint observation by the underground gravitational-wave detector, KAGRA, with GEO 600. Progress of Theoretical and Experimental Physics 2022 (6) 063F01. (10.1093/ptep/ptac073 ) Abbott, R. et al., 2022. Model-based cross-correlation search for gravitational waves from the low-mass x-ray binary scorpius x-1 in ligo o3 data. Astrophysical Journal Letters 941 (2) L30. (10.3847/2041-8213/aca1b0 ) Abbott, R. et al., 2022. Search for continuous gravitational wave emission from the Milky Way center in O3 LIGO-Virgo data. Physical Review D 106 (4) 042003. (10.1103/PhysRevD.106.042003 ) Abbott, R. et al., 2022. Search for gravitational waves from Scorpius X-1 with a hidden Markov model in O3 LIGO data. Physical Review D 106 (6) 062002. (10.1103/PhysRevD.106.062002 ) Abbott, R. et al., 2022. Searches for gravitational waves from known pulsars at two harmonics in the second and third LIGO-Virgo observing runs. Astrophysical Journal 935 (1) 1. (10.3847/1538-4357/ac6acf ) Abdalla, E. et al., 2022. Cosmology intertwined: A review of the particle physics, astrophysics, and cosmology associated with the cosmological tensions and anomalies. Journal of High Energy Astrophysics 34 , pp.49-211. (10.1016/j.jheap.2022.04.002 ) Abe, H. et al., 2022. Performance of the KAGRA detector during the first joint observation with GEO 600 (O3GK). Progress of Theoretical and Experimental Physics ptac093. (10.1093/ptep/ptac093 ) Abe, H. et al., 2022. The current status and future prospects of KAGRA, the large-scale cryogenic gravitational wave telescope built in the Kamioka underground. Galaxies 10 (3) 63. (10.3390/galaxies10030063 ) Ade, P. A. R. et al. 2022. Bicep/Keck XV: The Bicep3 cosmic microwave background polarimeter and the first three-year data set. Astrophysical Journal 927 (1) 77. (10.3847/1538-4357/ac4886 )Ade, P. A. R. et al. 2022. A constraint on primordial B-modes from the first flight of the Spider balloon-borne telescope. Astrophysical Journal 927 (2) 174. (10.3847/1538-4357/ac20df )Ade, P. et al. 2022. The latest constraints on inflationary B-modes from the BICEP/Keck telescopes. [Online].Cornell University. (10.48550/arXiv.2203.16556 )Available at: https://arxiv.org/abs/2203.16556 .Ade, R. A. P. et al., 2022. BICEP/Keck XIV: Improved constraints on axionlike polarization oscillations in the cosmic microwave background. PHYSICAL REVIEW D 105 022006. (10.1103/PhysRevD.105.022006 ) Ahmad, Z. 2022. Transverse-electric surface plasmon polaritons in homogeneous and periodic graphene systems. PhD Thesis , Cardiff University. Aiello, L. et al. 2022. Constraints on Scalar Field dark matter from Colocated Michelson interferometers. Physical Review Letters 128 (12) 121101. (10.1103/PhysRevLett.128.121101 )Albeladi, F. T. et al. 2022. Multi-mode interference reflector based InAs-QD laser. Presented at: 28th International Semiconductor Laser Conference (ISLC) Matsue, Japan 16-19 October 2022. Proceedings of 28th International Semiconductor Laser Conference (ISLC) . IEEE. (10.23919/ISLC52947.2022.9943389 )Albiladi, T. 2022. GaAs-based integration photonics: waveguides and splitting elements. PhD Thesis , Cardiff University.Ali, M. et al., 2022. Elliptical plasmonic near-field transducer and v-shape waveguide designs for heat assisted magnetic recording. Optics Continuum 1 (7), pp.1529-1541. (10.1364/OPTCON.460036 ) Allcock, T. , Langbein, W. and Muljarov, E. A. 2022. Quantum mollow quadruplet in nonlinear cavity QED. Physical Review Letters 128 123602. (10.1103/PhysRevLett.128.123602 )Almagwashi, B. 2022. Label-free detection of cell-cycling polyploid cells in osteosarcoma. PhD Thesis , Cardiff University.Alshahrani, D. O. et al. 2022. Emerging type-II superlattices of InAs/InAsSb and InAs/GaSb for mid-wavelength infrared photodetectors. Advanced Photonics Research 3 (2) 2100094. (10.1002/adpr.202100094 )Alunni Cardinali, M. et al., 2022. Brillouin-Raman microspectroscopy for the morpho-mechanical imaging of human lamellar bone. Journal of the Royal Society, Interface 19 (187)(10.1098/rsif.2021.0642 ) An, R. et al., 2022. What does cosmology tell us about the mass of thermal-relic dark matter?. Journal of Cosmology and Astroparticle Physics 2022 (07) 002. (10.1088/1475-7516/2022/07/002 ) Anderson, A. J. et al., 2022. SPT-3G+: mapping the high-frequency cosmic microwave background using kinetic inductance detectors. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022, Montréal, Québec, Canada Montreal, Canada 17-23 July 2022. Vol. 12190 .SPIE. (10.1117/12.2629755 ) Armijos-Abendano, J. et al. 2022. Broad-line region clouds orbiting an AGN sample. Monthly Notices of the Royal Astronomical Society 514 (1), pp.1535–1547. (10.1093/mnras/stac1442 )Artis, E. et al., 2022. PSZ2 G091: A massive double cluster atz~ 0.822 observed by the NIKA2 camera. EPJ Web of Conferences 257 00003. (10.1051/epjconf/202225700003 ) Arun, K. G. et al., 2022. New horizons for fundamental physics with LISA. Living Reviews in Relativity 25 (1) 4. (10.1007/s41114-022-00036-9 ) Askey, J. et al. 2022. Asymmetric dual Bloch point domain walls in cylindrical magnetic nanowires. APL Materials 10 (7) 071105. (10.1063/5.0089291 )Athikkat-Eknath, G. et al. 2022. Investigating variations in the dust emissivity index in the andromeda galaxy. Monthly Notices of the Royal Astronomical Society 511 (4), pp.5287-5300. (10.1093/mnras/stab3135 )Bains, W. et al. 2022. Venusian phosphine: a 'wow!' signal in chemistry?. Phosphorus, Sulfur, and Silicon and the Related Elements 197 (5-6), pp.438-443. (10.1080/10426507.2021.1998051 )Bains, W. et al. 2022. A data resource for prediction of gas-phase thermodynamic properties of small molecules. Data 7 (3) 33. (10.3390/data7030033 )Bains, W. et al. 2022. Only extraordinary volcanism can explain the presence of parts per billion phosphine on Venus. Proceedings of the National Academy of Sciences 119 (7) e2121702119. (10.1073/pnas.2121702119 )Bains, W. et al. 2022. Stratospheric chemical lifetime of aviation fuel incomplete combustion products. Atmosphere 13 (8) e1209. (10.3390/atmos13081209 )Baker, J. et al. 2022. VCSEL quick fabrication of 894.6 nm wavelength epi‐material for miniature atomic clock applications. IET Optoelectronics (10.1049/ote2.12082 )Baker, J. et al. 2022. VCSEL quick fabrication for assessment of large diameter epitaxial wafers. IEEE Photonics Journal 14 (3)(10.1109/JPHOT.2022.3169032 )Balkenhol, L. et al., 2022. A measurement of the CMB temperature power spectrum and constraints on cosmology from the SPT-3G 2018 TT/TE/EE Data Set. [Online].ArXiv. (10.48550/arXiv.2212.05642 )Available at: https://doi.org/10.48550/arXiv.2212.05642 . Bari, P. et al., 2022. An analytical study of the primordial gravitational-wave-induced contribution to the large-scale structure of the universe. [Online].arXiv. (10.48550/ARXIV.2209.05329 )Available at: https://arxiv.org/abs/2209.05329 . Barluzzi, L. et al., 2022. Identification of oxidation state +1 in a molecular uranium complex. Journal of the American Chemical Society 144 (40), pp.18229-18233. (10.1021/jacs.2c06519 ) Barron, D. et al., 2022. Conceptual design of the modular detector and readout system for the CMB-S4 survey experiment. Presented at: Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI Montreal, Canada 17-23 July 2022. Proceedings Volume 12190, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI . Vol. 12190 .SPIE. (10.1117/12.2630494 ) Barry, P. S. et al. 2022. Design of the SPT-SLIM focal plane: A spectroscopic imaging array for the South Pole Telescope. Journal of Low Temperature Physics 209 (5-6), pp.879-888. (10.1007/s10909-022-02843-4 )Barry, P. S. et al. 2022. Large-format, transmission-line-coupled kinetic inductance detector arrays for HEP at millimeter wavelengths. [Online].arXiv. (10.48550/arXiv.2203.15902 )Available at: http://arxiv.org/abs/2203.15902 .Bartlett, S. 2022. Our space our future final evaluation report. Project Report.[Online].Our Space Our Future. Available at: https://ourspaceourfuture.eu/wp-content/uploads/2022/07/OurSpace_D5.3_Final_Evaluation_Report.pdf .Basu Thakur, R. et al., 2022. Development of superconducting on-chip fourier transform spectrometers. Journal of Low Temperature Physics (10.1007/s10909-022-02920-8 ) Belczynski, K. et al., 2022. Black hole–black hole total merger mass and the origin of LIGO/Virgo sources. Astrophysical Journal 935 (2) 126. (10.3847/1538-4357/ac8167 ) Beltrachini, L. et al. 2022. Gwylia dy dafod / Watch your Welsh. [Online].Prifysgol Caerdydd / Cardiff University. Available at: https://gwyliadydafod.org/cy/index.html .Bernard, L. et al., 2022. Design and testing of a low-resolution NIR spectrograph for the EXoplanet Climate Infrared TElescope. Presented at: SPIE Astronomical Telescopes + Instrumentation Montréal, Québec, Canada 17-22 July 2022. Vol. 12184 .Society of Photo-optical Instrumentation Engineers. (10.1117/12.2629717 ) Bianchini, F. and Fabbian, G. 2022. CMB spectral distortions revisited: A new take on μ distortions and primordial non-Gaussianities from FIRAS data. Physical Review D 106 (6) 063527. (10.1103/PhysRevD.106.063527 ) Billington, D. et al. 2022. Radio-frequency manipulation of state populations in an entangled fluorine-muon-fluorine system. Physical Review Letters 129 (7) 077201. (10.1103/PhysRevLett.129.077201 )Bing, L. et al., 2022. Searching for high-z DSFGs with NIKA2 and NOEMA. Presented at: mm Universe @ NIKA2 Virtual 28 June - 2 July 2021. Vol. 257 .(10.1051/epjconf/202225700006 ) Bishop, S. G. et al. 2022. Evanescent-field assisted photon collection from quantum emitters under a solid immersion lens. New Journal of Physics 24 103027. (10.1088/1367-2630/ac9697 )Bishop, S. G. et al. 2022. Enhanced light collection from a gallium nitride color center using a near index-matched solid immersion lens. Applied Physics Letters 120 114001. (10.1063/5.0085257 )Bocchieri, A. et al., 2022. Detecting molecules in Ariel Tier 1 transmission spectra. Presented at: Europlanet Science Congress 2022 18–23 Sep 2022. EPSC Abstracts, Europlanet Science Congress 2022 . Vol. 16 .(10.5194/epsc2022-416 ) Bocchieri, A. , Mugnai, L. V. and Pascale, E. 2022. Predicting the optical performance of the Ariel Telescope using PAOS. Presented at: Europlanet Science Congress 2022 Granada, Spain 18–23 Sep 2022. EPSC Abstracts . Vol. 16 ., pp.EPSC2022-618. (10.5194/epsc2022-618 ) Bonne, L. et al., 2022. A potential new phase of massive star formation: a luminous outflow cavity centred on an infrared quiet core. Astronomy & Astrophysics 665 , pp.1-22. A22. (10.1051/0004-6361/202142154 ) Bose, M. et al., 2022. Low-noise diamond-based D.C. nano-SQUIDs. ACS Applied Electronic Materials 4 (5), pp.2246-2252. (10.1021/acsaelm.2c00048 ) Both, S. et al., 2022. Nanophotonic chiral sensing: how does it actually work?. ACS Nano 16 (2), pp.2822–2832. (10.1021/acsnano.1c09796 ) Bouscasse, L. et al., 2022. Multi-scale dynamics in star-forming regions: The interplay between gravity and turbulence. Presented at: IRAM Conference Multi-line Diagnostics of the Interstellar Medium Nice, France 4-6 April 2022. Vol. 265 .Società Italiana di Fisica. (10.1051/epjconf/202226500016 ) Bowey, J. E. and Hofmeister, A. M. 2022. Sakurai's Object revisited: new laboratory data for carbonates and melilites suggest the carrier of 6.9-?m excess absorption is a carbonate. Monthly Notices of the Royal Astronomical Society 513 (2), pp.1774-1784. (10.1093/mnras/stac993 )Bowles, N. E. et al., 2022. Ground calibration of the Ariel space telescope: optical ground support equipment design and description. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022 Montreal, Canada 17-23 July 2022. Proceedings Volume 12180, Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave . Vol. 12180 .SPIE. (10.1117/12.2627049 ) Brennan, S. J. et al., 2022. Photometric and spectroscopic evolution of the interacting transient AT 2016jbu(Gaia16cfr). Monthly Notices of the Royal Astronomical Society 513 (4), pp.5642-5665. (10.1093/mnras/stac1243 ) Brennan, S. J. et al., 2022. Progenitor, environment, and modelling of the interacting transient AT 2016jbu (Gaia16cfr). Monthly Notices of the Royal Astronomical Society 513 (4), pp.5666–5685. (10.1093/mnras/stac1228 ) Brien, T. L. R. et al., 2022. The Mexico UK Sub-mm Camera for Astronomy (MUSCAT) on-sky commissioning: performance of the cryogenic systems. Presented at: SPIE Astronomical Telescopes + Instrumentation 2022 Montreal, Canada 17-23 July 2022. Published in: Zmuidzinas, J. and Gao, J. eds. Proceedings Volume 12190, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI . SPIE. , pp.1219018. (10.1117/12.2630071 ) Brown, R. et al. 2022. Mid-infrared InAs/InAsSb Type-II superlattices grown on silicon by MOCVD. Journal of Crystal Growth 598 126860. (10.1016/j.jcrysgro.2022.126860 )Buckner, A. S. M. et al., 2022. The spatial evolution of young massive clusters III. Effect of the Gaia filter on 2D spatial distribution studies. Astronomy & Astrophysics 659 A72. (10.1051/0004-6361/202140902 ) Burigana, C. et al., 2022. Recent results and perspectives on cosmic backgrounds from radio to far-infrared. Presented at: The Fifteenth Marcel Grossmann Meeting Rome, Italy 1-7 July 2018. Published in: Battistelli, E. S. , Jantzen, R. T. and Ruffini, R. eds. Proceedings of The Fifteenth Marcel Grossmann Meeting on General Relativity . , pp.189-212. (10.1142/9789811258251_0014 ) Cai, Z. , Negrello, M. and De Zotti, G. 2022. Interpreting the statistical properties of High- z extragalactic sources detected by the South Pole Telescope Survey. Astrophysical Journal 932 (1) 13. (10.3847/1538-4357/ac6c83 ) Carron, J. , Lewis, A. and Fabbian, G. 2022. Planck integrated Sachs-Wolfe-lensing likelihood and the CMB temperature. PHYSICAL REVIEW D (10.1103/PhysRevD.106.103507 ) Cartwright, A. and Lewis, R. 2022. Video assignments: A powerful way to introduce creativity and fun into your program – A physics education story. Presented at: Cardiff University Teaching and Learning Conference 2022 Cardiff University 29-30 June 2022. Cavaliere, F. et al., 2022. QUBIC VII: The feedhorn-switch system of the technological demonstrator. Journal of Cosmology and Astroparticle Physics 2022 (04) 040. (10.1088/1475-7516/2022/04/040 ) Chang, C. L. et al., 2022. Snowmass2021 Cosmic Frontier: Cosmic Microwave Background Measurements White Paper. [Online].arXiv. (10.48550/arXiv.2203.07638 )Available at: http://arxiv.org/abs/2203.07638 . Chang, T. et al., 2022. InAsP quantum dot-embedded InP nanowires toward silicon photonic applications. ACS Applied Materials and Interfaces 14 (10), pp.12488–12494. (10.1021/acsami.1c21013 ) Charalampopoulos, P. et al., 2022. A detailed spectroscopic study of tidal disruption events. Astronomy & Astrophysics 659 A34. (10.1051/0004-6361/202142122 ) Charnay, B. et al., 2022. A survey of exoplanet phase curves with Ariel. Experimental Astronomy 53 (2), pp.417-446. (10.1007/s10686-021-09715-x ) Chastenet, J. et al., 2022. SOFIA/HAWC+ observations of the Crab Nebula: dust properties from polarized emission. Monthly Notices of the Royal Astronomical Society 516 (3), pp.4229-4244. (10.1093/mnras/stac2413 ) Chattaraj, A. et al., 2022. High accuracy post-Newtonian and numerical relativity comparisons involving higher modes for eccentric binary black holes and a dominant mode eccentric inspiral-merger-ringdown model. Physical Review D (particles, fields, gravitation, and cosmology) 106 (12) 124008. (10.1103/PhysRevD.106.124008 ) Chattopadhyay, D. et al. 2022. Dynamical double black holes and their host cluster properties. Monthly Notices of the Royal Astronomical Society 513 (3), pp.4527–4555. (10.1093/mnras/stac1163 )Chattopadhyay, D. et al. 2022. Modelling the formation of the first two neutron star-black hole mergers, GW200105 and GW200115: metallicity, chirp masses, and merger remnant spins. Monthly Notices of the Royal Astronomical Society 513 (4), pp.5780–5789. (10.1093/mnras/stac1283 )Chavan, H. S. et al., 2022. Designing and tuning the electronic structure of nickel–vanadium layered double hydroxides for highly efficient oxygen evolution electrocatalysis. ACS Catalysis 12 (7), pp.3821-3831. (10.1021/acscatal.1c05813 ) Chiarelli, A. M. et al., 2022. Cerebrovascular reactivity in multiple sclerosis is restored with reduced inflammation during immunomodulation. Scientific Reports 12 (1) 15453. (10.1038/s41598-022-19113-8 ) Chichura, P. M. et al., 2022. Asteroid measurements at millimeter wavelengths with the South Pole telescope. Astrophysical Journal 936 (2) 173. (10.3847/1538-4357/ac89ec ) Ching, T. et al., 2022. The JCMT BISTRO-2 survey: magnetic fields of the massive DR21 filament. Astrophysical Journal 941 122. (10.3847/1538-4357/ac9dfb ) Choi, S. K. et al., 2022. CCAT-Prime: characterization of the first 280 GHz MKID array for Prime-Cam. Journal of Low Temperature Physics 209 (5-6), pp.849-856. (10.1007/s10909-022-02787-9 ) Chown, R. et al., 2022. The cold gas and dust properties of red star-forming galaxies. Monthly Notices of the Royal Astronomical Society 516 (1), pp.84-99. (10.1093/mnras/stac2193 ) Chumak, A. V. et al., 2022. Advances in magnetics roadmap on spin-wave computing. IEEE Transactions on Magnetics 58 (6) 0800172. (10.1109/tmag.2022.3149664 ) Colombo, D. et al., 2022. The SEDIGISM survey: the influence of spiral arms on the molecular gas distribution of the inner Milky Way. Astronomy & Astrophysics 658 , pp.1-38. A54. (10.1051/0004-6361/202141287 ) Cornelison, J. et al., 2022. Improved polarization calibration of the BICEP3 CMB polarimeter at the South Pole. Presented at: SPIE Astronomical Telescopes + Instrumentation Montréal, Québec, Canada 17-22 July 2022. Proceedings, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI; 121901X . Vol. 12190 .SPIE. (10.1117/12.2620212 ) Cuenca, J. A. et al. 2022. Microwave plasma modelling in clamshell chemical vapour deposition diamond reactors. Diamond and Related Materials 124 108917. (10.1016/j.diamond.2022.108917 )D'Alessandro, G. et al., 2022. QUBIC experiment toward the first light. Journal of Low Temperature Physics 209 (5-6), pp.839–848. (10.1007/s10909-022-02775-z ) D'Alessandro, G. et al., 2022. QUBIC VI: Cryogenic half wave plate rotator, design and performance. Journal of Cosmology and Astroparticle Physics 2022 (04) 039. (10.1088/1475-7516/2022/04/039 ) Danielski, C. et al., 2022. The homogeneous characterisation of Ariel host stars. Experimental Astronomy 53 , pp.473-510. (10.1007/s10686-021-09765-1 ) Davis, T. A. et al. 2022. WISDOM Project - X. The morphology of the molecular ISM in galaxy centres and its dependence on galaxy structure. Monthly Notices of the Royal Astronomical Society 512 (1), pp.1522-1540. (10.1093/mnras/stac600 )De Marco, O. et al., 2022. The messy death of a multiple star system and the resulting planetary nebula as observed by JWST. Nature Astronomy 6 , pp.1421-1432. (10.1038/s41550-022-01845-2 ) De Petris, M. et al., 2022. Probing the role of magnetic fields in star-forming filaments: NIKA2-Pol commissioning results toward OMC-1. EPJ Web of Conferences 257 00002. (10.1051/epjconf/202225700002 ) De Petris, M. et al., 2022. CONCERTO at APEX: Installation and first phase of on-sky commissioning. EPJ Web of Conferences 257 00010. (10.1051/epjconf/202225700010 ) De Petris, M. et al., 2022. Observations with KIDs Interferometer Spectrum Survey (KISS). Presented at: mm Universe @ NIKA2 - Observing the mm Universe with the NIKA2 camera Virtual and Rome, Italy 28 June - 2 July 2021. Published in: De Petris, M. , Ferragamo, A. and Mayet, F. eds. Vol. 257 .Società Italiana di Fisica. (10.1051/epjconf/202225700017 ) De Petris, M. et al., 2022. Exploring the millimetre emission in nearby galaxies: Analysis of the edge-on galaxy NGC 891. EPJ Web of Conferences 257 00023. (10.1051/epjconf/202225700023 ) De Petris, M. et al., 2022. Overdensity of SubMillimiter Galaxies in the GJ526 field mapped with the NIKA2 camera. EPJ Web of Conferences 257 , pp.00027. (10.1051/epjconf/202225700027 ) De Petris, M. et al., 2022. Multi-probe analysis of the galaxy cluster CL J1226.9+3332: Hydrostatic mass and hydrostatic-to-lensing bias. EPJ Web of Conferences 257 00032. (10.1051/epjconf/202225700032 ) De Petris, M. et al., 2022. The LPSZ-CLASH galaxy cluster sample: Combining lensing and hydrostatic mass estimates. EPJ Web of Conferences 257 00033. (10.1051/epjconf/202225700033 ) De Petris, M. et al., 2022. Galactic star formation with NIKA2 (GASTON): Filament convergence and its link to star formation. EPJ Web of Conferences 257 00037. (10.1051/epjconf/202225700037 ) De Petris, M. et al., 2022. The NIKA2 Sunyaev-Zeldovich Large Program: Precise galaxy cluster physics for an accurate cluster-based cosmology. EPJ Web of Conferences 257 00038. (10.1051/epjconf/202225700038 ) De Petris, M. et al., 2022. Galactic Star Formation with NIKA2 (GASTON): Evidence of mass accretion onto dense clumps. EPJ Web of Conferences 257 00041. (10.1051/epjconf/202225700041 ) De Petris, M. et al., 2022. Crab nebula at 260 GHz with the NIKA2 polarimeter: Implications for the polarization angle calibration of future CMB experiments. EPJ Web of Conferences 257 00042. (10.1051/epjconf/202225700042 ) De Zotti, G. et al., 2022. New extragalactic research paths opened by Planck. Presented at: The Fifteenth Marcel Grossmann Meeting Rome, Italy 1-7 July 2018. Published in: Battistelli, E. S. , Jantzen, R. T. and Ruffini, R. eds. Proceedings of The Fifteenth Marcel Grossmann Meeting on General Relativity . , pp.1087-1092. (10.1142/9789811258251_0152 ) Deng, H. and Muljarov, E. A. 2022. Scattering solution to the problem of additional boundary conditions. Physical Review B 106 (19) 195301. (10.1103/PhysRevB.106.195301 )Deng, H. et al., 2022. The role of different types of dopants in 1.3 μm InAs/GaAs quantum-dot lasers. Journal of Physics D: Applied Physics 55 (21) 215105. (10.1088/1361-6463/ac55c4 ) Diaz Ortiz, M. et al., 2022. Design of the ALPS II optical system. Physics of the Dark Universe 35 100968. (10.1016/j.dark.2022.100968 ) Dibert, K. et al., 2022. Development of MKIDs for measurement of the cosmic microwave background with the South Pole Telescope. Journal of Low Temperature Physics 209 , pp.363-371. (10.1007/s10909-022-02750-8 ) Dobbelaar, E. et al., 2022. Thermal and magnetic field switching in a two-step hysteretic MnIII spin crossover compound coupled to symmetry breakings. Angewandte Chemie International Edition 61 (4) e202114021. (10.1002/anie.202114021 ) Dobrovolskiy, O. et al., 2022. Complex-shaped 3D nanoarchitectures for magnetism and superconductivity. In: Makorov, D. and Sheka, D. D. eds. Curvilinear Micromagnetism: From Fundamentals to Applications . Springer. , pp.215-268. (10.1007/978-3-031-09086-8_5 ) Dona, K. et al., 2022. Design and performance of a terahertz Fourier transform spectrometer
for axion dark matter experiments. Journal of Instrumentation 17 (06) P06014. (10.1088/1748-0221/17/06/P06014 ) Dong, Y. et al., 2022. SN 2016dsg: A thermonuclear explosion involving a thick helium shell. Astrophysical Journal 934 (2) 102. (10.3847/1538-4357/ac75eb ) Dooley, K. L. , Grote, H. and van den Brand, J. 2022. Terrestrial laser interferometers. In: Bambi, C. , Katsanevas, S. and Kokkotas, K. D. eds. Handbook of Gravitational Wave Astronomy . Springer. , pp.37-83. (10.1007/978-981-16-4306-4_2 )Doux, C. et al., 2022. Dark energy survey year 3 results: cosmological constraints from the analysis of cosmic shear in harmonic space. Monthly Notices of the Royal Astronomical Society 515 (2), pp.1942-1972. (10.1093/mnras/stac1826 ) Duarte Cabral, A. 2022. Erratum: the sedigism survey: molecular clouds in the inner galaxy - supplementary material. Monthly Notices of the Royal Astronomical Society 513 (1), pp.296-296. (10.1093/mnras/stac909 )Dunne, L. et al. 2022. Dust, CO, and [C I]: cross-calibration of molecular gas mass tracers in metal-rich galaxies across cosmic time. Monthly Notices of the Royal Astronomical Society 517 (1), pp.962–999. (10.1093/mnras/stac2098 )Duzdevich, D. et al., 2022. An experimental approach to inform Venus astrobiology mission design and science objectives. Aerospace 9 (10) 597. (10.3390/aerospace9100597 ) Dye, S. et al., 2022. A high-resolution investigation of the multiphase ISM in a galaxy during the first two billion years. Monthly Notices of the Royal Astronomical Society 510 (3), pp.3734-3757. (10.1093/mnras/stab3569 ) Edwards, L. 2022. Neutron diffraction studies of frustrated and correlated electron systems. PhD Thesis , Cardiff University.Encrenaz, T. et al., 2022. Observability of temperate exoplanets with Ariel. Experimental Astronomy 53 (2), pp.375-390. (10.1007/s10686-021-09793-x ) Essinger-Hileman, T. M. et al., 2022. EXCLAIM: the EXperiment for cryogenic large-aperture intensity mapping. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022 Montréal, Québec, Canada 17-22 July 2022. Proceedings Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI; 1219009 (2022) . Vol. 12190 .SPIE. (10.1117/12.2630054 ) Fairhurst, S. et al. 2022. All-sky search for continuous gravitational waves from isolated neutron stars using Advanced LIGO and Advanced Virgo O3 data. Physical Review D 106 (10)(10.1103/PhysRevD.106.102008 )Fanciullo, L. et al., 2022. The JCMT BISTRO Survey: multiwavelength polarimetry of bright regions in NGC 2071 in the far-infrared/submillimetre range, with POL-2 and HAWC+. Monthly Notices of the Royal Astronomical Society 512 (2), pp.1985-2002. (10.1093/mnras/stac528 ) Ferguson, R. K. , SPT-3G Collaboration, and Tucker, C. 2022. Searching for axionlike time-dependent cosmic birefringence with data from SPT-3G. Physical Review D 106 042011. (10.1103/PhysRevD.106.042011 ) Filippini, J. P. et al., 2022. In-flight gain monitoring of SPIDER's transition-edge sensor arrays. Journal of Low Temperature Physics 209 , pp.649-657. (10.1007/s10909-022-02729-5 ) Flicker, F. 2022. Understanding the call of the monopole. Science 378 (6625), pp.1177-1177. (10.1126/science.ade2301 )Gallagher, L. A. P. et al., 2022. Microwave-optical coupling via Rydberg excitons in cuprous oxide. Physical Review Research 4 (1) 013031. (10.1103/PhysRevResearch.4.013031 ) Gao, X. et al., 2022. Emergence of two-level systems in glass formers: a kinetic Monte Carlo study. Soft Matter 11 , pp.2211-2221. (10.1039/D1SM01809D ) Gascard, T. et al. 2022. Pixel design for FIR/mm/submm astronomy constituted of a set of antenna-coupled superconducting detectors feeding a metamaterial-based lenslet. Presented at: Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI Montreal, Canada 17-23 July 2022. Proceedings Volume 12190 Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI . Vol. 12190 .SPIE. (10.1117/12.2627848 )Gatti, M. et al., 2022. Cross-correlation of Dark Energy Survey Year 3 lensing data with ACT and Planck thermal Sunyaev-Zel'dovich effect observations. I. Measurements, systematics tests, and feedback model constraints. Physical Review D 105 (12) 123525. (10.1103/PhysRevD.105.123525 ) Giakoumaki, A. N. et al., 2022. Quantum technologies in diamond enabled by laser processing. Applied Physics Letters 120 (2) 020502. (10.1063/5.0080348 ) Giardiello, S. et al. 2022. Detailed study of HWP non-idealities and their impact on future measurements of CMB polarization anisotropies from space. Astronomy & Astrophysics 658 A15. (10.1051/0004-6361/202141619 )Ginsburg, A. et al., 2022. ALMA-IMF. Astronomy & Astrophysics 662 A9. (10.1051/0004-6361/202141681 ) Giulietti, M. et al., 2022. The far-infrared/radio correlation for a sample of strongly lensed dusty star-forming galaxies detected by Herschel. Monthly Notices of the Royal Astronomical Society 511 (1), pp.1408–1419. (10.1093/mnras/stac145 ) Glass, D. H. W. et al., 2022. Cool interstellar medium as an evolutionary tracer in ALMA-observed local dusty early-type galaxies. Monthly Notices of the Royal Astronomical Society 517 (4), pp.5524-5540. (10.1093/mnras/stac3001 ) Goldfinger, D. C. et al., 2022. Thermal testing for cryogenic CMB instrument optical design. Presented at: SPIE Astronomical Telescopes + Instrumentation Montréal, Canada 17-22 July 2022. Proceedings Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI; 121901V (2022) . Vol. 12190 .SPIE. (10.1117/12.2629490 ) Golec, J. E. et al., 2022. Simons Observatory: broadband metamaterial antireflection cuttings for large-aperture alumina optics. Applied Optics 61 (30), pp.8904-8911. (10.1364/AO.472459 ) Gong, Y. et al. 2022. Topological lasers with epitaxially grown InGaAs nanowires on a SOI substrate. Presented at: Conference on Lasers and Electro-Optics, QELS_Fundamental Science 2022 San Jose, US 15–20 May 2022. Conference on Lasers and Electro-Optics . Technical Digest Series San Jose, US: Optica Publishing Group. (10.1364/CLEO_QELS.2022.FF2C.1 )Gopinath, G. et al., 2022. Diffusion-coefficient power laws and defect-driven glassy dynamics in swap acceleration. Physical Review Letters 129 (16) 168002. (10.1103/PhysRevLett.129.168002 ) Gottini, D. et al., 2022. FEA testing the pre-flight Ariel primary mirror. Presented at: SPIE Astronomical Telescopes and Instrumentation 17 - 22 July 2022. Proceedings SPIE, Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave . Vol. 1280 .SPIE. (10.1117/12.2629815 ) Greaves, J. S. and Mason, B. 2022. Single-dish 1-cm-band radio photometry of protoplanetary discs: few centimetre-sized dust grains?. Monthly Notices of the Royal Astronomical Society 513 (3), pp.3180–3190. (10.1093/mnras/stac856 )Greaves, J. S. et al. 2022. Low levels of sulphur dioxide contamination of Venusian phosphine spectra. Monthly Notices of the Royal Astronomical Society 514 (2), pp.2994-3001. (10.1093/mnras/stac1438 )Gualtieri, R. et al., 2022. Optical leakage mitigation in ortho-mode transducer detectors for microwave applications. Journal of Low Temperature Physics 209 (3-4), pp.314-321. (10.1007/s10909-022-02733-9 ) Gunasekar, N. 2022. Role of defects in ultra-high gain in fast planar tin gallium oxide UV-C photodetector by MBE. Applied Physics Letters 121 (11) 111105. (10.1063/5.0107557 )Guo, F. et al., 2022. Discovery of a dysprosium metallocene single-molecule magnet with two high-temperature Orbach processes. Inorganic Chemistry 61 (16), pp.6017–6025. (10.1021/acs.inorgchem.1c03980 ) Hadden, J. P. et al. 2022. Design of free-space couplers for suspended triangular nano-beam waveguides. Journal of Physics D: Applied Physics 55 (47) 474002. (10.1088/1361-6463/ac941e )Hamilton, J. et al., 2022. QUBIC I: Overview and science program. Journal of Cosmology and Astroparticle Physics 2022 (04) 034. (10.1088/1475-7516/2022/04/034 ) Hamilton, S. et al. 2022. Sizing individual dielectric nanoparticles with quantitative differential interference contrast microscopy. Analyst 147 (8), pp.1567-1580. (10.1039/D1AN02009A )Hannam, M. et al. 2022. General-relativistic precession in a black-hole binary. Nature 610 (7933), pp.652-655. (10.1038/s41586-022-05212-z )Hasebe, T. et al., 2022. Sensitivity modeling for LiteBIRD. Journal of Low Temperature Physics (10.1007/s10909-022-02921-7 ) Hejazi, A. 2022. Exploring the use of two-photon lithography
and deposition to produce arrays
of magnetic elements. PhD Thesis , Cardiff University.Hensley, B. S. et al., 2022. The Simons Observatory: galactic science goals and forecasts. Astrophysical Journal 929 (2) 166. (10.3847/1538-4357/ac5e36 ) Hentschel, C. 2022. Device and material characterisation of vertical cavity surface emitting lasers. PhD Thesis , Cardiff University. Hill, J. C. et al., 2022. Atacama Cosmology Telescope: Constraints on prerecombination early dark energy. Physical Review D 105 (12) 123536. (10.1103/PhysRevD.105.123536 ) Hincks, A. D. et al., 2022. A high-resolution view of the filament of gas between Abell 399 and Abell 401 from the Atacama Cosmology Telescope and MUSTANG-2. Monthly Notices of the Royal Astronomical Society 510 (3), pp.3335–3355. (10.1093/mnras/stab3391 ) Hood, J. C. et al., 2022. Testing low-loss microstrip materials with mkids for microwave applications. Journal of Low Temperature Physics 209 (5-6), pp.1189-1195. (10.1007/s10909-022-02881-y ) Hosseinzadeh, G. et al., 2022. Weak mass loss from the red supergiant progenitor of the Type II SN 2021yja. Astrophysical Journal 935 (1) 31. (10.3847/1538-4357/ac75f0 ) Hoy, C. 2022. Accelerating multimodel Bayesian inference, model selection, and systematic studies for gravitational wave astronomy. Physical Review D 106 (8) 083003. (10.1103/PhysRevD.106.083003 )Hoy, C. et al. 2022. Understanding how fast black holes spin by analyzing data from the second gravitational-wave catalogue. Astrophysical Journal 928 (1) 75. (10.3847/1538-4357/ac54a3 )Hoy, C. , Mills, C. and Fairhurst, S. 2022. Evidence for subdominant multipole moments and precession in merging black-hole-binaries from GWTC-2.1. Physical Review D 106 (2) 023019. (10.1103/PhysRevD.106.023019 )Hubmayr, J. , et, a. and Tucker, C. 2022. Optical characterization of OMT-Coupled TES bolometers for LiteBIRD. Journal of Low Temperature Physics 209 (10.1007/s10909-022-02808-7 ) Husemann, B. et al., 2022. The Close AGN Reference Survey (CARS): IFU survey data and the BH mass dependence of long-term AGN variability. Astronomy and Astrophysics 659 A124. (10.1051/0004-6361/202141312 ) Hwang, J. et al., 2022. The JCMT BISTRO Survey: a spiral magnetic field in a hub-filament structure, Monoceros R2. Astrophysical Journal 941 (1) 51. (10.3847/1538-4357/ac99e0 ) Inamdar, A. et al., 2022. Copper cobalt tin sulphide (Cu2CoSnS4) anodes synthesised using a chemical route for stable and efficient rechargeable lithium-ion batteries. Dalton Transactions 51 (38), pp.14535-14544. (10.1039/D2DT01966C ) Inbar, H. S. et al., 2022. Epitaxial growth, magnetoresistance, and electronic band structure of GdSb magnetic semimetal films. Physical Review Materials 6 (12) L121201. (10.1103/PhysRevMaterials.6.L121201 ) Irani, I. et al., 2022. Less Than 1% of core-collapse supernovae in the local universe occur in elliptical galaxies. Astrophysical Journal 927 (1) 10. (10.3847/1538-4357/ac4709 ) Ivanov, M. et al. 2022. Unified method for measuring entropy differences between coexisting surface phases using low energy electron microscopy. Physical Review Research 4 033163. (10.1103/PhysRevResearch.4.033163 )James, A. 2022. Advanced experimental systems for gravitational wave detectors and dark matter searches. PhD Thesis , Cardiff University. Jarvis, L. 2022. Active region doping strategies in O-band InAs/GaAs quantum-dot lasers. PhD Thesis , Cardiff University.Jarvis, L. K. et al. 2022. Active region doping strategies in O-band InAs/GaAs quantum-dot lasers. Presented at: SPIE OPTO, 2022 22-27 January 2022. Society of Photo-optical Instrumentation Engineers(10.1117/12.2614632 )Kalinova, V. et al., 2022. Investigating the link between inner gravitational potential and star-formation quenching in CALIFA galaxies. Astronomy & Astrophysics 665 A90. (10.1051/0004-6361/202243541 ) Karkare, K. S. et al., 2022. SPT-SLIM: A Line Intensity Mapping Pathfinder for the South Pole Telescope. Journal of Low Temperature Physics 209 , pp.758-765. (10.1007/s10909-022-02702-2 ) Kelley, M. S. P. et al., 2022. A look at outbursts of Comet C/2014 UN 271 (Bernardinelli–Bernstein) near 20 au. Astrophysical Journal Letters 933 (2) L44. (10.3847/2041-8213/ac7bec ) Kim, H. et al., 2022. Silver thiocyanate treatment-induced enhancement of photoluminescence efficiency of CsPbBr3 perovskite quantum dots. Journal of the Korean Physical Society 81 , pp.150-157. (10.1007/s40042-022-00501-2 ) Kim, Y. et al., 2022. Self-assembled honeycomb lattices of dielectric colloidal nanospheres featuring photonic Dirac cones. ACS Applied Nano Material 5 (3), pp.3386-3393. (10.1021/acsanm.1c03986 ) Koch, P. M. et al., 2022. A multiscale picture of the magnetic field and gravity from a large-scale filamentary envelope to core-accreting dust lanes in the high-mass star-forming Region W51. Astrophysical Journal 940 (1) 89. (10.3847/1538-4357/ac96e3 ) Kokori, A. et al., 2022. ExoClock Project. II. A large-scale integrated study with 180 updated exoplanet ephemerides. The Astrophysical Journal Supplement Series 258 (2) 40. (10.3847/1538-4365/ac3a10 ) Kokori, A. et al., 2022. ExoClock project: an open platform for monitoring the ephemerides of Ariel targets with contributions from the public. Experimental Astronomy 53 (2), pp.547-588. (10.1007/s10686-020-09696-3 ) Kumar Singh, M. et al., 2022. Improved early-warning estimates of luminosity distance and orbital inclination of compact binary mergers using higher modes of gravitational radiation. Monthly Notices of the Royal Astronomical Society 513 (3), pp.3798–3809. (10.1093/mnras/stac852 ) Kuznetsov, S. et al., 2022. Cerium-doped gadolinium-scandium-aluminum garnet powders: synthesis and use in X-ray luminescent diamond composites. Ceramics International 48 (9), pp.12962-12970. (10.1016/j.ceramint.2022.01.169 ) Kwan, D. C. M. et al. 2022. Monolithic integration of a 10 μm cut-off wavelength InAs/GaSb type-II superlattice diode on GaAs platform. Scientific Reports 12 (1) 11616. (10.1038/s41598-022-15538-3 )Kwan, D. 2022. Long-wavelength type-II InAs/GaSb superlattice infrared photodetectors. PhD Thesis , Cardiff University.Kwon, W. et al., 2022. B-fields in Star-forming Region Observations (BISTRO): Magnetic fields in the filamentary structures of Serpens Main. Astrophysical Journal 926 (2) 163. (10.3847/1538-4357/ac4bbe ) Ladak, S. , Fernandez-Pacheco, A. and Fischer, P. 2022. Science and technology of 3D magnetic nanostructures. APL Materials 10 (12) 120401. (10.1063/5.0136801 )Lara-Lopez, M. A. et al., 2022. The Fornax3D project: The environmental impact on gas metallicity gradients in Fornax cluster galaxies. Astronomy and Astrophysics 660 A105. (10.1051/0004-6361/202142790 ) Lee, D. et al., 2022. The TolTEC camera: polarimetric commissioning and performance of the continuously rotating half-wave plate. Presented at: SPIE Astronomical Telescopes + Instrumentation 2022 Montreal, Canada 17-23 July 2022. Proceedings Volume 12190, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI . SPIE. (10.1117/12.2627725 ) Lee, H. et al., 2022. Refinement of the convex shape model and tumbling spin state of (99942) Apophis using the 2020?2021 apparition data. Astronomy & Astrophysics 661 L3. (10.1051/0004-6361/202243442 ) Leigh, W. 2022. In-situ monitoring of microwave plasma-enhanced chemical vapour deposition diamond growth. PhD Thesis , Cardiff University.Leigh, W. G. et al. 2022. In-situ monitoring of microwave plasma-enhanced chemical vapour deposition diamond growth on silicon using spectroscopic ellipsometry. Carbon 202 , pp.204-212. (10.1016/j.carbon.2022.10.049 )Leisawitz, D. T. et al., 2022. The Japan-United States Infrared Interferometry Experiment (JUStIInE): balloon-borne pathfinder for a space-based far-IR interferometer. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022 Montréal, Québec, Canada 17-23 July 2022. Proc. SPIE 12190, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI . Vol. 12190 .SPIE. (10.1117/12.2629426 ) Lelli, F. et al. 2022. WISDOM Project - XIII. Feeding molecular gas to the supermassive black hole in the starburst AGN-host galaxy Fairall 49. Monthly Notices of the Royal Astronomical Society 516 (3), pp.4066–4083. (10.1093/mnras/stac2493 )Lembo, M. et al., 2022. CMB lensing reconstruction biases from masking extragalactic sources. PHYSICAL REVIEW D (10.1103/PhysRevD.106.023525 ) Lepori, F. et al., 2022. Euclid preparation: XIX. Impact of magnification on photometric galaxy clustering. Astronomy & Astrophysics 662 A93. (10.1051/0004-6361/202142419 ) Lestrade, J. et al., 2022. Candidate cosmic filament in the GJ526 field, mapped with the NIKA2 camera. Astronomy & Astrophysics 667 A23. (10.1051/0004-6361/202244036 ) Leung, J. S. et al., 2022. A simulation-based method for correcting mode coupling in CMB angular power spectra. Astrophysical Journal 928 (2) 109. (10.3847/1538-4357/ac562f ) Lewis, R. 2022. Collegiate commentary: thoughts on "Five things that broadened our horizons from the 'Innovation in Science Teaching' series". [Online].Teaching Matters Blog: University of Edinburgh. Available at: https://express.adobe.com/page/kyyQifDMM3wS6/#collegiate-commentary .Li, J. et al., 2022. Reducing frequency scatter in large arrays of superconducting resonators with inductor line width control. Journal of Low Temperature Physics 209 (5-6), pp.1196-1203. (10.1007/s10909-022-02893-8 ) Li, Y. et al., 2022. Coherent coupling of two remote magnonic resonators mediated by superconducting circuits. Physical Review Letters 128 (4)(10.1103/PhysRevLett.128.047701 ) Lisovenko, M. et al., 2022. Characterization of the superconducting microwave properties of aluminum manganese. Journal of Low Temperature Physics 209 (5-6), pp.1158-1164. (10.1007/s10909-022-02845-2 ) Lister, T. et al., 2022. The LCO Outbursting Objects Key Project: Overview and year 1 status. The Planetary Science Journal 3 (7) 173. (10.3847/psj/ac7a31 ) LiteBIRD Collaboration, et al., 2022. Probing cosmic inflation with the LiteBIRD cosmic microwave background polarization survey. Progress of Theoretical and Experimental Physics (10.1093/ptep/ptac150 ) Liu, B. et al., 2022. Massive molecular gas reservoir in a luminous submillimeter galaxy during cosmic noon. Astrophysical Journal 929 (1) 41. (10.3847/1538-4357/ac5745 ) Liu, J. et al., 2022. Broadband solenoidal haloscope for terahertz axion detection. Physical Review Letters 128 (13) 131801. (10.1103/PhysRevLett.128.131801 ) Liu, J. et al., 2022. Theoretical analysis and modelling of degradation for III–V lasers on Si. Journal of Physics D: Applied Physics 55 (40) 404006. (10.1088/1361-6463/ac83d3 ) Liu, L. et al., 2022. WISDOM Project - XII. Clump properties and turbulence regulated by clump-clump collisions in the dwarf galaxy NGC 404. Monthly Notices of the Royal Astronomical Society 517 (1), pp.632-656. (10.1093/mnras/stac2287 ) Liu, Y. et al., 2022. Towards energy level cascaded “quantum armours” combating metal corrosion. Applied Surface Science 593 153369. (10.1016/j.apsusc.2022.153369 ) Lloyd, J. et al., 2022. Statistical mechanics of dimers on quasiperiodic Ammann-Beenker tilings. Physical Review B 106 (9) 094202. (10.1103/PhysRevB.106.094202 ) Lokken, M. et al., 2022. Superclustering with the Atacama Cosmology Telescope and Dark Energy Survey. I. Evidence for thermal energy anisotropy using oriented stacking. Astrophysical Journal 933 (2) 134. (10.3847/1538-4357/ac7043 ) Lovell, C. C. et al., 2022. A machine learning approach to mapping baryons on to dark matter haloes using the eagle and C-EAGLE simulations. Monthly Notices of the Royal Astronomical Society (10.1093/mnras/stab3221 ) Lu, A. et al., 2022. WISDOM project – XI. Star formation efficiency in the bulge of the AGN-host Galaxy NGC 3169 with SITELLE and ALMA. Monthly Notices of the Royal Astronomical Society 514 (4), pp.5035–5055. (10.1093/mnras/stac1583 ) Lu, M. et al., 2022. In situ growth CNT@MOFs core-shell structures enabling high specific supercapacitances in neutral aqueous electrolyte. Nano Research 15 , pp.6112-6120. (10.1007/s12274-022-4184-y ) Lu, X. et al., 2022. Ecotoxicity and sustainability of emerging Pb-based photovoltaics. Solar RRL 6 (12) 2200699. (10.1002/solr.202200699 ) Lungu, M. et al., 2022. The Atacama Cosmology Telescope: measurement and analysis of 1D beams for DR4. Journal of Cosmology and Astroparticle Physics 2022 (05) 044. (10.1088/1475-7516/2022/05/044 ) Luo, W. et al., 2022. InP/GaAsP DWELL lasers grown on (001) Si emitting at 740 nm. Presented at: 28th International Semiconductor Laser Conference (ISLC) Matsue, Japan 16-19 October 2022. Proceedings of 28th International Semiconductor Laser Conference . IEEE(10.23919/islc52947.2022.9943341 ) MacGillivray, A. C. et al., 2022. Band-edge absorption characteristics of semi-insulating indium phosphide under unified Franz-Keldysh and Einstein models. Physical Review B 105 (15) 155203. (10.1103/PhysRevB.105.155203 ) Maglio, B. C. 2022. Electroabsorption modulators and
laser diodes for free space optics
and on-chip applications. PhD Thesis , Cardiff University. Mahoney, J. et al. 2022. Measurement of the quantum-confined Stark effect in InAs/In(Ga)As quantum dots with p-doped quantum dot barriers. Optics Express 30 (11), pp.17730-17738. (10.1364/OE.455491 )Mandal, S. , Shaw, G. and Williams, O. A. 2022. Comparison of nanodiamond coated quartz filter with commercial electropositive filters: Zeta potential and dye retention study. Carbon 199 , pp.439-443. (10.1016/j.carbon.2022.08.021 )Manifold, S. 2022. Material considerations for the development of superconducting boron doped nanocrystalline diamond devices. PhD Thesis , Cardiff University.Maresca, J. et al., 2022. Modelling high-resolution ALMA observations of strongly lensed dusty star-forming galaxies detected by Herschel. Monthly Notices of the Royal Astronomical Society 512 (2), pp.2426–2438. (10.1093/mnras/stac585 ) Masi, S. et al., 2022. QUBIC V: Cryogenic system design and performance. Journal of Cosmology and Astroparticle Physics 2022 (04) 038. (10.1088/1475-7516/2022/04/038 ) Masia, F. et al. 2022. uFLIM - Unsupervised analysis of FLIM-FRET microscopy data. Medical Image Analysis 82 102579. (10.1016/j.media.2022.102579 )Masia, F. , Monim, N. and Langbein, W. 2022. Wavelength agile quantum dot laser for lab-on-chip optical biosensors. Presented at: IEEE Photonics Conference (IPC) Vancouver, Canada 13-17 November 2022. 2022 IEEE Photonics Conference (IPC) Proceedings . IEEE. (10.1109/IPC53466.2022.9975747 )Matsuura, M. et al. 2022. Spitzer and Herschel studies of dust in supernova remnants in the Small Magellanic Cloud. Monthly Notices of the Royal Astronomical Society 513 (1), pp.1154-1174. (10.1093/mnras/stac583 )Matsuura, M. et al. 2022. Mid-infrared imaging of supernova 1987a. Monthly Notices of the Royal Astronomical Society 517 (3), pp.4327-4336. (10.1093/mnras/stac3036 )McCann, H. 2022. Variability of head tissues’ conductivities and their impact in electrical brain activity research. PhD Thesis , Cardiff University.McCann, H. M. and Beltrachini, L. 2022. Impact of skull sutures, spongiform bone distribution, and aging skull conductivities on the EEG forward and inverse problems. Journal of Neural Engineering 19 016014. (10.1088/1741-2552/ac43f7 )McKenzie, I. et al., 2022. Paramagnetic probes in an organic semiconductor: μSR and DFT calculations of the Mu adducts of Alq3 and 8-hydroxyquinoline. The Journal of Chemical Physics 157 (6) 064702. (10.1063/5.0105200 ) Medler, K. et al., 2022. SN 2020acat: an energetic fast rising Type IIb supernova. Monthly Notices of the Royal Astronomical Society 513 (4), pp.5540–5558. (10.1093/mnras/stac1192 ) Mele, L. et al., 2022. Measuring CMB spectral distortions from Antarctica with COSMO: blackbody calibrator design and performance forecast. Journal of Low Temperature Physics 209 , pp.912-918. (10.1007/s10909-022-02874-x ) Mercado, D. et al., 2022. Development of a fourier transform spectrometer for the calibration of THz on-chip spectrometers. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022, Montréal, Québec, Canada 17-23 July 2022. Vol. 12190 .Spie. (10.1117/12.2630221 ) Minchin, R. et al., 2022. Environmental effects in Herschel Observations of the ionized carbon content of star-forming dwarf galaxies in the Virgo Cluster. Astronomical Journal 164 (2) 44. (10.3847/1538-3881/ac746d ) Monfardini, A. et al., 2022. CONCERTO at APEX: Installation and technical commissioning. Journal of Low Temperature Physics 209 , pp.751-757. (10.1007/s10909-022-02690-3 ) Montgomery, J. et al., 2022. Performance and characterization of the SPT-3G digital frequency-domain multiplexed readout system using an improved noise and crosstalk model. Journal of Astronomical Telescopes, Instruments, and Systems 8 (1) 014001. (10.1117/1.JATIS.8.1.014001 ) Morello, G. , Danielski, C. and Sarkar, S. 2022. The Ariel 0.6 - 7.8 μm stellar limb-darkening coefficients. Experimental Astronomy 53 , pp.533-545. (10.1007/s10686-021-09740-w ) Morreau, A. , Lewis, R. and Roche, P. 2022. From TikTok videos to instruction manuals: MSc students inspired to reach beyond the assessment framework in an authentic learning assignment – a physics education story. Presented at: Cardiff University Teaching and Learning Conference 2022 Cardiff University 29 - 30 June 2022. Morris, T. W. et al., 2022. The Atacama Cosmology Telescope: Modeling bulk atmospheric motion. Physical Review D 105 (4) 042004. (10.1103/PhysRevD.105.042004 ) Motte, F. et al., 2022. ALMA-IMF. Astronomy & Astrophysics 662 A8. (10.1051/0004-6361/202141677 ) Mousset, L. et al., 2022. Status of QUBIC, the Q&U bolometer for cosmology. [Online].Cornell University. (10.48550/arXiv.2210.03161 )Available at: https://arxiv.org/abs/2210.03161 . Mousset, L. et al., 2022. QUBIC II: Spectral polarimetry with bolometric interferometry. Journal of Cosmology and Astroparticle Physics 2022 (04)(10.1088/1475-7516/2022/04/035 ) Mugnai, L. V. and Modirrousta-Galian, D. 2022. RAPOC: Rosseland and Planck mean opacities calculator. GitHubMugnai, L. V. et al. 2022. ExoSim 2. The new time-domain simulator applied to the Ariel space mission. Presented at: Europlanet Science Congress 2022 18–23 September 2022. EPSC2022-370, 2022 . Vol. 16 .(10.5194/epsc2022-370 )Mugnai, L. V. et al. 2022. ExoRad2: Generic point source radiometric model. Astrophysics Source Code LibraryNagler, P. C. et al., 2022. The EXoplanet Climate Infrared TElescope (EXCITE). Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022 Montréal, Québec, Canada 17-22 July 2022. Vol. 12184 .Society of Photo-optical Instrumentation Engineers. (10.1117/12.2629373 ) Nahmad-Rohen, A. et al. 2022. Simultaneous microscopic imaging of thickness and refractive index of thin layers by heterodyne interferometric reflectometry (HiRef). Journal of Physics D: Applied Physics 55 (5) 054001. (10.1088/1361-6463/ac22d4 )Namikawa, T. et al., 2022. Simons Observatory: Constraining inflationary gravitational waves with multi-tracer B-mode delensing. Physical Review D 105 (2) 023511. (10.1103/PhysRevD.105.023511 ) Naylor, D. A. et al., 2022. Development of a cryogenic far-infrared post-dispersed polarising Fourier transform spectrometer. Presented at: 2022 47th International Conference on Infrared, Millimeter and Terahertz Waves (IRMMW-THz) Delft, Netherlands 28 August - 02 November 2022. 2022 47th International Conference on Infrared, Millimeter and Terahertz Waves (IRMMW-THz) . IEEE. (10.1109/IRMMW-THz50927.2022.9896015 ) Nelson, A. H. 2022. Eigenmode analysis of perturbations in the primordial medium at and before recombination. Astronomy & Astrophysics 661 A84. (10.1051/0004-6361/202039978 )Neralwar, K. R. et al., 2022. The SEDIGISM survey: Molecular cloud morphology II. Integrated source properties. Astronomy & Astrophysics 664 (2022) A84. (10.1051/0004-6361/202142513 ) Neralwar, K. R. et al., 2022. The SEDIGISM survey: Molecular cloud morphology. Astronomy & Astrophysics 663 A56. (10.1051/0004-6361/202142428 ) Ng, K. K. Y. et al., 2022. On the single-event-based identification of primordial black hole mergers at cosmological distances. Astrophysical Journal Letters 931 (1) L12. (10.3847/2041-8213/ac6bea ) Nguyen, D. D. et al., 2022. The MBHBM* Project – II. Molecular gas kinematics in the lenticular galaxy NGC 3593 reveal a supermassive black hole. Monthly Notices of the Royal Astronomical Society 509 (2), pp.2920–2939. (10.1093/mnras/stab3016 ) Niculescu-Duvaz, M. et al., 2022. Dust masses for a large sample of core-collapse supernovae from optical emission line asymmetries: dust formation on 30-year time-scales. Monthly Notices of the Royal Astronomical Society 515 (3), pp.4302–4343. (10.1093/mnras/stac1626 ) Orkney, M. D. A. et al., 2022. The impact of two massive early accretion events in a Milky Way-like galaxy: repercussions for the buildup of the stellar disc and halo. Monthly Notices of the Royal Astronomical Society: Letters 517 (1), pp.L138–L142. (10.1093/mnrasl/slac126 ) O'Sullivan, C. et al., 2022. QUBIC VIII: Optical design and performance. Journal of Cosmology and Astroparticle Physics 2022 (04) 041. (10.1088/1475-7516/2022/04/041 ) Osypiw, A. et al. 2022. Solution-processed colloidal quantum dots for light emission. Materials Advances 3 , pp.6773-6790. (10.1039/D2MA00375A )Othman, D. M. et al. 2022. Photonics design theory enhancing light extraction efficiency in quantum dot light emitting diodes. Journal of Physics: Materials 5 (4) 044009. (10.1088/2515-7639/ac9e77 )Otter, J. A. et al., 2022. Resolved molecular gas observations of MaNGA post-starbursts reveal a tumultuous past. Astrophysical Journal 941 93. (10.3847/1538-4357/ac9dee ) Pace, E. et al., 2022. The telescope assembly of the Ariel space mission. Presented at: SPIE Astronomical Telescopes + Instrumentation 17-22 July 2022. Proceedings SPIE 12180, Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave . Vol. 12180 .SPIE. (10.1117/12.2629432 ) Pakmor, R. et al., 2022. Formation and fate of low-metallicity stars in TNG50. Monthly Notices of the Royal Astronomical Society 512 (3), pp.3602-3615. (10.1093/mnras/stac717 ) Pan, S. et al., 2022. Multi-wavelength 128 Gbit s−1 λ−1 PAM4 optical transmission enabled by a 100 GHz quantum dot mode-locked optical frequency comb. Journal of Physics D: Applied Physics 55 (14) 144001. (10.1088/1361-6463/ac4365 ) Pandey, S. et al., 2022. Cross-correlation of Dark Energy Survey Year 3 lensing data with ACT and Planck thermal Sunyaev-Zel'dovich effect observations. II. Modeling and constraints on halo pressure profiles. Physical Review D 105 (12) 123526. (10.1103/PhysRevD.105.123526 ) Papadopoulos, P. , Dunne, L. and Maddox, S. 2022. The subthermal excitation of the C Ⅰ lines in the molecular gas reservoirs of galaxies: its significance and potential utility. Monthly Notices of the Royal Astronomical Society 510 (1), pp.725-733. (10.1093/mnras/stab3194 )Park, H. et al. 2022. Nodal lines in momentum space: topological invariants and recent realizations in photonic and other systems. Nanophotonics 11 (11), pp.2779-2801. (10.1515/nanoph-2021-0692 )Park, H. et al. 2022. Block copolymer gyroids for nanophotonics: significance of lattice transformations. Nanophotonics 11 (11), pp.2583-2615. (10.1515/nanoph-2021-0644 )Park, H. and Oh, S. S. 2022. Sign freedom of non-abelian topological charges in phononic and photonic topological semimetals. New Journal of Physics 24 (5) 053042. (10.1088/1367-2630/ac6ca3 )Park, H. et al. 2022. Topological phase transitions of non-Abelian charged nodal lines in spring-mass systems. Physical Review B (Condensed Matter) 105 (21) 214108. (10.1103/PhysRevB.105.214108 )Pascoe, M. J. et al. 2022. Impact of material properties in determining quaternary ammonium compound adsorption and wipe product efficacy against biofilms. Journal of Hospital Infection 126 , pp.37-43. (10.1016/j.jhin.2022.03.013 )Pearson, C. et al., 2022. The Ariel ground segment and instrument operations science data centre. Experimental Astronomy 53 , pp.773-806. (10.1007/s10686-020-09691-8 ) Piat, M. et al., 2022. QUBIC IV: Performance of TES bolometers and readout electronics. Journal of Cosmology and Astroparticle Physics 2022 (04) 037. (10.1088/1475-7516/2022/04/037 ) Piat, M. R. et al., 2022. QUBIC-the Q & U bolometric interferometer for cosmology. Presented at: SPIE Astronomical Telescopes + Instrumentation Montréal, Québec, Canada 17-22 July 2022. Proceedings, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI; 121902T . SPIE. (10.1117/12.2642114 ) Pisano, G. et al. 2022. Development and application of metamaterial-based half-wave plates for the NIKA and NIKA2 polarimeters. Astronomy and Astrophysics 658 A24. (10.1051/0004-6361/202038643 )Pizzati, E. et al., 2022. Toward inference of overlapping gravitational-wave signals. Physical Review D 105 (10) 104016. (10.1103/PhysRevD.105.104016 ) Plumley, A. et al. 2022. Rigid motion-resolved B1+ prediction using deep learning for real-time parallel-transmission pulse design. Magnetic Resonance in Medicine 87 (5), pp.2254-2270. (10.1002/mrm.29132 )Pouteau, Y. et al., 2022. ALMA-IMF. Astronomy & Astrophysics 664 A26. (10.1051/0004-6361/202142951 ) Priestley, F. D. et al. 2022. Dust destruction and survival in the Cassiopeia A reverse shock. Monthly Notices of the Royal Astronomical Society 509 (3), pp.3163–3171. (10.1093/mnras/stab3195 )Priestley, F. D. , De Looze, I. and Barlow, M. J. 2022. The impact of metallicity-dependent dust destruction on the dust-to-metals ratio in galaxies. Monthly Notices of the Royal Astronomical Society - Letters 509 (1), pp.L6–L10. (10.1093/mnrasl/slab114 )Priestley, F. D. and Whitworth, A. P. 2022. The origin of a universal filament width in molecular clouds. Monthly Notices of the Royal Astronomical Society 509 (1), pp.1494–1503. (10.1093/mnras/stab2816 )Priestley, F. D. and Whitworth, A. P. 2022. The widths of magnetized filaments in molecular clouds. Monthly Notices of the Royal Astronomical Society 512 (1), pp.1407–1414. (10.1093/mnras/stac627 )Priestley, F. , Whitworth, A. and Fogerty, E. 2022. Differences in chemical evolution between isolated and embedded prestellar cores. Monthly Notices of the Royal Astronomical Society 518 (4), pp.4839-4844. (10.1093/mnras/stac3444 )Priestley, F. D. et al. 2022. Properties of shocked dust grains in supernova remnants. Monthly Notices of the Royal Astronomical Society 516 (2), pp.2314-2325. (10.1093/mnras/stac2408 )Priestley, F. D. , Yin, C. and Wurster, J. 2022. The initial magnetic criticality of pre-stellar cores. Monthly Notices of the Royal Astronomical Society 515 (4), pp.5689-5697. (10.1093/mnras/stac2107 )Prole, L. R. et al. 2022. Fragmentation-induced starvation in Population III star formation: a resolution study. Monthly Notices of the Royal Astronomical Society 510 (3), pp.4019–4030. (10.1093/mnras/stab3697 )Punanova, A. et al., 2022. Methanol mapping in cold cores: testing model predictions*. Astrophysical Journal 927 (2) 213. (10.3847/1538-4357/ac4e7d ) Rahmani, M. et al., 2022. Optical characterization and testbed development for μ-Spec integrated spectrometers. Presented at: SPIE Astronomical Telescopes + Instrumentation Montréal, Québec, Canada 17-22 July 2022. Proceedings SPIE Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave . Vol. 12180 .SPIE. (10.1117/12.2630311 ) Rani, R. et al., 2022. Solenoidal turbulent modes and star formation efficiency in Galactic plane molecular clouds. Monthly Notices of the Royal Astronomical Society 515 (1), pp.271-285. (10.1093/mnras/stac1812 ) Ranjan, S. et al., 2022. Photochemical runaway in exoplanet atmospheres: implications for biosignatures. Astrophysical Journal 930 (2) 131. (10.3847/1538-4357/ac5749 ) Redford, J. et al., 2022. Superspec: on-chip spectrometer design, characterization, and performance. Journal of Low Temperature Physics 209 (3-4), pp.548-555. (10.1007/s10909-022-02866-x ) Rehm, T. et al., 2022. The design and development status of the cryogenic receiver for the EXoplanet Climate Infrared TELescope (EXCITE). Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022 Montréal, Québec, Canada 17-22 July 2022. Vol. 12184 .Society of Photo-optical Instrumentation Engineers. (10.1117/12.2629588 ) Relaño, M. et al., 2022. Dust grain size evolution in local galaxies: a comparison between observations and simulations. Monthly Notices of the Royal Astronomical Society 515 (4), pp.5306-5334. (10.1093/mnras/stac2108 ) Relton, P. et al. 2022. Addressing the challenges of detecting time-overlapping compact binary coalescences. Physical Review D 106 (10) 104045. (10.1103/PhysRevD.106.104045 )Robson, G. et al. 2022. The simulation and design of an on-chip superconducting millimetre filter-bank spectrometer. Journal of Low Temperature Physics 209 , pp.493-501. (10.1007/s10909-022-02747-3 )Rogers, J. P. et al., 2022. High-resolution nanosecond spectroscopy of even-parity Rydberg excitons in Cu2O. Physical Review B 105 (11) 115206. (10.1103/PhysRevB.105.115206 ) Rohde, P. F. et al., 2022. Protostellar outflows: a window to the past. Monthly Notices of the Royal Astronomical Society 510 (2), pp.2552–2571. (10.1093/mnras/stab3572 ) Rouble, M. et al., 2022. RF-ICE: large-scale gigahertz readout of frequency-multiplexed microwave kinetic inductance detectors. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022, Montréal, Québec, Canada 17-23 July 2022. Vol. 12190 .SPIE. (10.1117/12.2630286 ) Rowe, S. et al., 2022. The muscat readout electronics backend: design and pre-deployment performance. Journal of Low Temperature Physics (10.1007/s10909-022-02868-9 ) Ruffa, I. et al. 2022. The AGN fuelling/feedback cycle in nearby radio galaxies - IV. Molecular gas conditions and jet-ISM interaction in NGC 3100. Monthly Notices of the Royal Astronomical Society 510 (3), pp.4485–4503. (10.1093/mnras/stab3541 )Saikia, P. et al., 2022. A multiwavelength study of GRS 1716-249 in outburst: constraints on its system parameters. Astrophysical Journal 932 (1) 38. (10.3847/1538-4357/ac6ce1 ) Sakai, Y. et al., 2022. Unsupervised learning architecture for classifying the transient noise of interferometric gravitational-wave detectors. Scientific Reports 12 (1) 9935. (10.1038/s41598-022-13329-4 ) Saleem, M. et al., 2022. Parametrized tests of post-Newtonian theory using principal component analysis. Physical Review D 105 (8) 084062. (10.1103/PhysRevD.105.084062 ) Saleem, M. et al., 2022. The science case for LIGO-India. Classical and Quantum Gravity 39 (2) 025004. (10.1088/1361-6382/ac3b99 ) Santos, A. et al., 2022. Application of advanced (S)TEM methods for the study of nanostructured porous functional surfaces: A few working examples. Materials Characterization 185 111741. (10.1016/j.matchar.2022.111741 ) Santos Gomes, B. et al. 2022. Biofunctionalisation of gallium arsenide with neutravidin. Journal of Colloid and Interface Science 608 (P3), pp.2399-2406. (10.1016/j.jcis.2021.10.135 )Sarin, N. et al., 2022. Linking the rates of neutron star binaries and short gamma-ray bursts. Physical Review D 105 (8) 083004. (10.1103/PhysRevD.105.083004 ) Sarkar, S. 2022. The DRAKE mission: finding the frequency of life in the Cosmos. Monthly Notices of the Royal Astronomical Society (10.1093/mnras/stac175 )Sauvan, C. et al., 2022. Normalization, orthogonality, and completeness of quasinormal modes of open systems: the case of electromagnetism [Invited]. Optics Express 30 (5), pp.6846-6885. (10.1364/OE.443656 ) Scaramella, R. et al., 2022. Euclid preparation: I. The Euclid Wide Survey. Astronomy & Astrophysics 662 A112. (10.1051/0004-6361/202141938 ) Scicluna, P. et al., 2022. The nearby evolved stars survey II: constructing a volume-limited sample and first results from the James Clerk Maxwell telescope. Monthly Notice of the Royal Astronomical Society 512 (1), pp.1091-1110. (10.1093/mnras/stab2860 ) Secco, L. F. et al., 2022. Dark Energy Survey year 3 results: three-point shear correlations and mass aperture moments. Physical Review D 105 (10) 103537. (10.1103/PhysRevD.105.103537 ) Singha, M. et al., 2022. The Close AGN Reference Survey (CARS): Locating the [O III] wing component in luminous local Type 1 AGN. Astronomy & Astrophysics 659 A123. (10.1051/0004-6361/202040122 ) Sinusia Lozano, M. et al., 2022. SAW resonators and filters based on Sc0.43Al0.57N on single crystal and polycrystalline diamond. Micromachines 13 (7) 1061. (10.3390/mi13071061 ) Smirnova-Pinchukova, I. et al., 2022. The Close AGN Reference Survey (CARS): no obvious signature of AGN feedback on star formation, but subtle trends. Astronomy and Astrophysics 659 A125. (10.1051/0004-6361/202142011 ) Sobrin, J. A. et al., 2022. The design and integrated performance of SPT-3G. Astrophysical Journal Supplement 258 (2) 42. (10.3847/1538-4365/ac374f ) Soliman, A. et al., 2022. 2022 upgrade and improved low frequency camera sensitivity for CMB observation at the South Pole. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022, Montreal, Quebec, Canada 17-23 July 2022. Proceedings Volume 12190, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI . SPIE. , pp.1219014. (10.1117/12.2628058 ) Srivastava, V. et al., 2022. Science-driven tunable design of cosmic explorer detectors. Astrophysical Journal 931 (1) 22. (10.3847/1538-4357/ac5f04 ) Stegmann, J. , Antonini, F. and Moe, M. 2022. Evolution of massive stellar triples and implications for compact object binary formation. Monthly Notices of the Royal Astronomical Society 516 (1), pp.1406-1427. (10.1093/mnras/stac2192 )Stegmann, J. et al. 2022. Binary black hole mergers from merged stars in the Galactic field. Physical Review D 106 (2) 023014. (10.1103/PhysRevD.106.023014 )Steiger, A. et al., 2022. Design of optically coupled superconducting on-chip fourier transform spectrometers for cmb science. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022 Montreal, Canada 17-23 July 2022. Vol. PC1219 .SPIE. (10.1117/12.2650512 ) Stotesbury, I. et al., 2022. Twinkle: a small satellite spectroscopy mission for the next phase of exoplanet science. Presented at: SPIE Astronomical Telescopes + Instrumentation, 2022 Montréal, Québec, Canada 17-23 July 2022. Proceedings Volume 12180, Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave . (10.1117/12.2641373 ) Symeonidis, M. et al., 2022. The star formation rates of QSOs. Monthly Notices of the Royal Astronomical Society 514 (3), pp.4450–4464. (10.1093/mnras/stac1359 ) Szabó, G. M. et al., 2022. High-precision photometry with Ariel. Experimental Astronomy 53 (2), pp.607-634. (10.1007/s10686-021-09777-x ) Sztranyovszky, Z. , Langbein, W. and Muljarov, E. A. 2022. Optical resonances in graded index spheres: a resonant-state-expansion study and analytic approximations. Physical Review A 105 (3) 033522. (10.1103/PhysRevA.105.033522 )Sztranyovszky, Z. 2022. Application of resonant-state expansion to inhomogeneous and non-spherical optical resonators. PhD Thesis , Cardiff University.Tapia, M. et al., 2022. The Mexico UK sub-mm camera for astronomy (MUSCAT) on-sky commissioning: focal plane performance.. Presented at: Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XI Montreal, Canada 17-23 July 2022. Proceedings Volume 12190, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy X . (10.1117/12.2630377 ) Tax, C. M. et al. 2022. What's new and what's next in diffusion MRI preprocessing. NeuroImage 249 118830. (10.1016/j.neuroimage.2021.118830 )Thater, S. et al., 2022. Cross-checking SMBH mass estimates in NGC 6958 – I. Stellar dynamics from adaptive optics-assisted MUSE observations. Monthly Notices of the Royal Astronomical Society 509 (4), pp.5416–5436. (10.1093/mnras/stab3210 ) The LiteBIRD Collaboration, et al., 2022. In-flight polarization angle calibration for LiteBIRD: blind challenge and cosmological implications. Journal of Cosmology and Astroparticle Physics 2022 (01)(10.1088/1475-7516/2022/01/039 ) The Polarbear Collaboration, et al., 2022. Improved upper limit on degree-scale CMB B-mode polarization power from the 670 square-degree POLARBEAR Survey. Astrophysical Journal 931 (2) 101. (10.3847/1538-4357/ac6809 ) Tiwari, V. 2022. Exploring features in the binary black hole population. Astrophysical Journal 928 (2) 155. (10.3847/1538-4357/ac589a )Torchinsky, S. et al., 2022. QUBIC III: Laboratory characterization. Journal of Cosmology and Astroparticle Physics 2022 (04) 036. (10.1088/1475-7516/2022/04/036 ) Tsang, T. T. L. et al. 2022. Optimal sensor fusion method for active vibration isolation systems in ground-based gravitational-wave detectors. Classical and Quantum Gravity 39 (18) 185007. (10.1088/1361-6382/ac8780 )Tula, T. et al., 2022. Joint machine learning analysis of muon spectroscopy data from different materials. Journal of Physics: Conference Series 2164 (1) 012018. (10.1088/1742-6596/2164/1/012018 ) Upham, R. E. et al., 2022. Euclid: Covariance of weak lensing pseudo-Cℓ estimates. Astronomy & Astrophysics 660 A114. (10.1051/0004-6361/202142908 ) Urquhart, J. S. et al., 2022. ATLASGAL - evolutionary trends in high-mass star formation. Monthly Notices of the Royal Astronomical Society 510 (3), pp.3389–3407. (10.1093/mnras/stab3511 ) Urquhart, S. A. et al., 2022. The bright extragalactic ALMA redshift survey (BEARS) I: redshifts of bright gravitationally lensed galaxies from the Herschel ATLAS. Monthly Notices of the Royal Astronomical Society 511 (2), pp.3017-3033. (10.1093/mnras/stac150 ) van de Voort, F. et al. 2022. The impact of natal kicks on galactic r-process enrichment by neutron star mergers. Monthly Notices of the Royal Astronomical Society 512 (4), pp.5258–5268. (10.1093/mnras/stac710 )Verschuur, A. et al., 2022. Improved segmentation of neonatal brain MRI scans by addressing motion artifacts with data interpolation. Presented at: Proceedings of the 13th International Newborn Brain Conference: Neuro-imaging studies 10-12/02/2022. IOS Press. (10.3233/NPM-229001 ) Vielva, P. et al., 2022. Polarization angle requirements for CMB B-mode experiments. Application to the LiteBIRD satellite. Journal of Cosmology and Astroparticle Physics 2022 (04) 029. (10.1088/1475-7516/2022/04/029 ) Villanueva, V. et al., 2022. Vertico. IV. Environmental effects on the gas distribution and star formation efficiency of virgo cluster spirals. Astrophysical Journal 940 (2) 176. (10.3847/1538-4357/ac9d3c ) Wang, J. et al., 2022. Formation of the SDC13 hub-filament system: a cloud–cloud collision imprinted on the multiscale magnetic field. Astrophysical Journal 931 (2) 115. (10.3847/1538-4357/ac6872 ) Wang, Y. et al. 2022. A primary effect of palmitic acid on mouse oocytes is the disruption of the structure of the endoplasmic reticulum. Reproduction 163 (1), pp.45-56. (10.1530/REP-21-0332 )Wang, Y. et al. 2022. Quantitatively linking morphology and optical response of individual silver nanohedra. Nanoscale 14 (30) 11028. (10.1039/D2NR02131E )Ward, B. A. et al. 2022. Herschel–ATLAS Data Release III: near-infrared counterparts in the South Galactic Pole field – another 100 000 submillimetre galaxies. Monthly Notices of the Royal Astronomical Society 510 (2), pp.2261–2276. (10.1093/mnras/stab3300 )Wells, M. R. A. et al., 2022. ATLASGAL - star forming efficiencies and the Galactic star formation rate. Monthly Notices of the Royal Astronomical Society 516 (3), pp.4245–4255. (10.1093/mnras/stac2420 ) Wevers, T. et al., 2022. An elliptical accretion disk following the tidal disruption event AT 2020zso. Astronomy & Astrophysics 666 A6. (10.1051/0004-6361/202142616 ) Whittaker, J. R. et al. 2022. Measuring arterial pulsatility with dynamic inflow magnitude contrast. Frontiers in Neuroscience 15 795749. (10.3389/fnins.2021.795749 )Whittaker, J. R. et al. 2022. The spatiotemporal dynamics of cerebral autoregulation in functional magnetic resonance imaging. Frontiers in Neuroscience 16 795683. (10.3389/fnins.2022.795683 )Whitworth, A. , Priestley, F. and Geen, S. T. 2022. Ionizing feedback from an O star formed in a shock-compressed layer. Monthly Notices of the Royal Astronomical Society 517 (4), pp.4940-4949. (10.1093/mnras/stac2955 )Winkel, N. et al., 2022. The Close AGN Reference Survey (CARS): Tracing the circumnuclear star formation in the super-Eddington NLS1 Mrk 1044. Astronomy & Astrophysics 663 A104. (10.1051/0004-6361/202243697 ) Wong, S. 2022. Exploration of novel topological lasing modes: their robustness and dynamics. PhD Thesis , Cardiff University.Wong, S. and Oh, S. S. 2022. Erratum: Topological bulk lasing modes using an imaginary gauge field [Phys. Rev. Research 3, 033042 (2021)]. Physical Review Research 4 (1) 019001. (10.1103/PhysRevResearch.4.019001 )Wood, B. D. et al., 2022. Long spin coherence times of nitrogen vacancy centers in milled nanodiamonds. Physical Review B 105 (20) 205401. (10.1103/PhysRevB.105.205401 ) Yan, D. et al., 2022. Lead leaching of perovskite solar cells in aqueous environments: A quantitative investigation. Solar RRL 6 (9) 2200332. (10.1002/solr.202200332 ) Yan, X. et al., 2022. Activated carbon assisted fenton-like treatment of wastewater containing acid red g. Catalysts 12 (11) 1358. (10.3390/catal12111358 ) Yang, A. Y. et al., 2022. The SEDIGISM survey: A search for molecular outflows. Astronomy and Astrophysics 658 A160. (10.1051/0004-6361/202142039 ) Young, L. M. et al., 2022. Down but not out: Properties of the molecular gas in the stripped Virgo Cluster Early-type Galaxy NGC 4526. Astrophysical Journal 933 (1) 90. (10.3847/1538-4357/ac7149 ) Yu, W. et al., 2022. Etching characteristics and surface properties of fluorine-doped tin oxide thin films under CF4-based plasma treatment. Applied Physics A: Materials Science and Processing 128 (10) 942. (10.1007/s00339-022-06082-y ) Zabel, N. et al., 2022. VERTICO II: How H i -identified environmental mechanisms affect the molecular gas in cluster galaxies. Astrophysical Journal 933 (1) 10. (10.3847/1538-4357/ac6e68 ) Zavattini, G. et al., 2022. Polarimetry for measuring the vacuum magnetic birefringence with quasi-static fields: a systematics study for the VMB@CERN experiment. The European Physical Journal C 82 (2) 159. (10.1140/epjc/s10052-022-10100-x ) Zhang, L. et al., 2022. Design and optimization of dispersion-flattened microarray-core fiber with ultralow loss for terahertz transmission. Alexandria Engineering Journal 61 (11), pp.9061-9068. (10.1016/j.aej.2022.02.043 ) Zhu, Y. et al., 2022. Estimating the impact of foregrounds on the future detection of Rayleigh scattering. Journal of Cosmology and Astroparticle Physics 2022 (09) 048. (10.1088/1475-7516/2022/09/048 )