The LSST Darkish Vitality Science Collaboration et al. The LSST Darkish Vitality Science Collaboration (DESC) science necessities doc. Preprint at https://doi.org/10.48550/arXiv.1809.00166 (2018).
Laureijs, R. et al. Euclid definition examine report. Preprint at https://doi.org/10.48550/arXiv.1110.3193 (2011).
DES Collaboration et al. Darkish Vitality Survey 12 months 6 outcomes: cosmological constraints from cosmic shear. Preprint at https://doi.org/10.48550/arXiv.2602.10065 (2026).
Chisari, N. E. et al. Modelling baryonic suggestions for survey cosmology. Open J. Astrophys. 2, 4 (2019).
Giri, S. Okay. & Schneider, A. Emulation of baryonic results on the matter energy spectrum and constraints from galaxy cluster knowledge. J. Cosmol. Astropart. Phys. 2021, 046 (2021).
Akino, D. et al. HSC-XXL: Baryon finances of the 136 XXL teams and clusters. Publ. Astron. Soc. Jpn 74, 175–208 (2022).
Kugel, R. et al. FLAMINGO: calibrating massive cosmological hydrodynamical simulations with machine studying. Mon. Not. R. Astron. Soc. 526, 6103–6127 (2023).
Popesso, P. et al. The recent gasoline mass fraction in halos: from Milky Means-like teams to large clusters. Astron. Astrophys. 707, A362 (2026).
Siegel, J. et al. The suppression of the matter energy spectrum: robust suggestions from X-ray gasoline mass fractions, kSZ impact profiles, and galaxy-galaxy lensing. Mon. Not. R. Astron. Soc. 549, stag993 (2026).
Ferreira, T., Alonso, D., Garcia-Garcia, C. & Chisari, N. E. X-ray-cosmic-shear cross-correlations: first detection and constraints on Baryonic results. Phys. Rev. Lett. 133, 051001 (2024).
Bigwood, L. et al. Weak lensing mixed with the kinetic Sunyaev–Zel’dovich impact: a examine of baryonic suggestions. Mon. Not. R. Astron. Soc. 534, 655–682 (2024).
Dalal, N. et al. Deciphering baryonic suggestions from ACT tSZ galaxy clusters. J. Cosmol. Astropart. Phys. 2026, 036 (2026).
Pandey, S. et al. Constraints on cosmology and baryonic suggestions with joint evaluation of Darkish Vitality Survey 12 months 3 lensing knowledge and ACT DR6 thermal Sunyaev–Zel’dovich impact observations. Preprint at https://doi.org/10.48550/arXiv.2506.07432 (2025).
Abitbol, M. et al. The Simons Observatory: science objectives and forecasts for the improved Massive Aperture Telescope. J. Cosmol. Astropart. Phys. 2025, 034 (2025).
Eckert, D. et al. The affect of robust suggestions on galaxy group scaling relations. Astron. Astrophys. 709, L4 (2026).
McDonald, W. et al. The FLAMINGO Challenge: exploring the X-ray–cosmic-shear cross-correlation as a probe of large-scale construction. Preprint at https://doi.org/10.48550/arXiv.2602.02484 (2026).
Madhavacheril, M. S., Battaglia, N., Smith, Okay. M. & Sievers, J. L. Cosmology with the kinematic Sunyaev–Zeldovich impact: breaking the optical depth degeneracy with quick radio bursts. Phys. Rev. D 100, 103532 (2019).
Ding, J. et al. Miscentring of optical galaxy clusters primarily based on Sunyaev–Zeldovich counterparts. Mon. Not. R. Astron. Soc. 536, 572–591 (2025).
Efstathiou, G. & McCarthy, F. The ability spectrum of the thermal Sunyaev–Zeldovich impact. Mon. Not. R. Astron. Soc. 540, 1055–1068 (2025).
Petroff, E., Hessels, J. W. T. & Lorimer, D. R. Quick radio bursts on the daybreak of the 2020s. Astron. Astrophys. Rev. 30, 2 (2022).
Macquart, J. P. et al. A census of baryons within the Universe from localized quick radio bursts. Nature 581, 391–395 (2020).
Cordes, J. M. & Lazio, T. J. W. NE2001.I. A brand new mannequin for the galactic distribution of free electrons and its fluctuations. Preprint at https://doi.org/10.48550/arXiv.astro-ph/0207156 (2002).
Prochaska, J. X. & Zheng, Y. Probing galactic haloes with quick radio bursts. Mon. Not. R. Astron. Soc. 485, 648–665 (2019).
Sharma, Okay. et al. Preferential incidence of quick radio bursts in large star-forming galaxies. Nature 635, 61–66 (2024).
Sharma, Okay. et al. Quantifying the affect of choice results on FRB DM–z relation cosmological inference. Astrophys. J. 999, 202 (2026).
McQuinn, M. Finding the ‘lacking’ baryons with extragalactic dispersion measure estimates. Astrophys. J. Lett. 780, L33 (2014).
Sharma, Okay. et al. A hydrodynamical simulations-based mannequin that connects the FRB DM–redshift relation to suppression of the matter energy spectrum through suggestions. Astrophys. J. 989, 81 (2025).
Amon, A. et al. Darkish Vitality Survey 12 months 3 outcomes: cosmology from cosmic shear and robustness to knowledge calibration. Phys. Rev. D 105, 023514 (2022).
Zhang, G. Q., Yu, H., He, J. H. & Wang, F. Y. Dispersion measures of quick radio burst host galaxies derived from IllustrisTNG Simulation. Astrophys. J. 900, 170 (2020).
Planck Collaboration et al. Planck 2018 outcomes. VI. Cosmological parameters. Astron. Astrophys. 641, A6 (2020).
Khrykin, I. S. et al. FLIMFLAM DR1: the primary constraints on the cosmic baryon distribution from eight quick radio burst sight traces. Astrophys. J. 973, 151 (2024).
Connor, L. et al. A gas-rich cosmic net revealed by the partitioning of the lacking baryons. Nat. Astron. 9, 1226–1239 (2025).
Das, S., Truong, N., Chiang, Y.-Okay. & Mathur, S. Thermal Sunyaev–Zel’dovich impact within the circumgalactic medium. II. Dependence on star formation. Astrophys. J. 991, 205 (2025).
Anbajagane, D. et al. The Darkish Vitality Digicam All Knowledge All over the place Cosmic Shear Challenge V: constraints on cosmology and astrophysics from 270 million galaxies throughout 13,000 deg2 of the sky. Preprint at https://doi.org/10.48550/arXiv.2509.03582 (2025).
Wright, A. H. et al. KiDS-Legacy: cosmological constraints from cosmic shear with the whole Kilo-Diploma Survey. Astron. Astrophys. 703, A158 (2025).
Leung, C. et al. Stellar mass–dispersion measure correlations constrain baryonic suggestions in quick radio burst host galaxies. Astrophys. J. Lett. 991, L25 (2025).
Reischke, R. & Hagstotz, S. A primary measurement of baryonic suggestions with quick radio bursts. Open J. Astrophys. 9, 64244 (2026).
Quataert, E. & Hopkins, P. F. Cosmic ray suggestions in large halos: implications for the distribution of baryons. Open J. Astrophys. 8, 66 (2025).
Preston, C., Rogers, Okay. Okay., Amon, A. & Efstathiou, G. Prospects for disentangling darkish matter with weak lensing. Mon. Not. R. Astron. Soc. 542, 2698–2713 (2025).
Medlock, I., Nagai, D., Anglés-Alcázar, D. & Gebhardt, M. Constraining baryonic suggestions results on the matter energy spectrum with quick radio bursts. Astrophys. J. 983, 46 (2025).
Baptista, J. et al. Measuring the variance of the macquart relation in redshift–extragalactic dispersion measure modeling. Astrophys. J. 965, 57 (2024).
CHIME/FRB Collaboration et al. CHIME/FRB Outriggers: design overview. Astrophys. J. 993, 55 (2025).
Hallinan, G. et al. The DSA-2000—a radio survey digicam. In Astro2020: Decadal Survey on Astronomy and Astrophysics APC White Papers Vol. 51 No. 7, Article 255 (eds Astro2020 Decadal Survey on Astronomy and Astrophysics Committee) (Bulletin of the American Astronomical Society, 2019).
Carilli, C. L. & Rawlings, S. Motivation, key science initiatives, requirements and assumptions. New Astron. Rev. 48, 979–984 (2004).
Vanderlinde, Okay. et al. The Canadian Hydrogen Observatory and Radio-transient Detector (CHORD). In Canadian Lengthy Vary Plan for Astronomy and Astrophysics White Papers Vol. 2020 (ed Canadian Lengthy Vary Plan 2020 Steering Committee) 28 (Canadian Astronomical Society (CASCA), 2019).
Mas-Ribas, L. & James, C. W. A τ-DM relation for quick radio burst hosts? Astrophys. J. 998, 1 (2026).
Cheng, A. Q., Andrew, S. E., Wang, H. & Masui, Okay. W. Exploring choice biases in quick radio burst dispersion-galaxy cross-correlations with magnetohydrodynamical simulations. Astrophys. J. 998, 252 (2026).
Sharma, Okay. et al. Backlighting the cosmic net with quick radio bursts: an anthology of dispersion measure cross-correlations with large-scale construction and baryon tracers. Preprint at https://doi.org/10.48550/arXiv.2604.22105 (2026).
Rafiei-Ravandi, M. et al. CHIME/FRB Catalog 1 Outcomes: statistical cross-correlations with large-scale construction. Astrophys. J. 922, 42 (2021).
Di Valentino, E. et al. The CosmoVerse White Paper: addressing observational tensions in cosmology with systematics and elementary physics. Phys. Darkish Universe 49, 101965 (2025).
Lucie-Smith, L. et al. Cosmological suggestions from a halo meeting perspective. Phys. Rev. D 112, 063541 (2025).
Siegel, J. C. et al. Joint X-ray, kinetic Sunyaev–Zeldovich, and weak lensing measurements: towards a consensus image of environment friendly gasoline expulsion from teams and clusters. Astrophys. J. 1003, 151 (2026).
Bulbul, E. et al. The SRG/eROSITA All-Sky Survey. The primary catalog of galaxy clusters and teams within the Western Galactic Hemisphere. Astron. Astrophys. 685, A106 (2024).
Aggarwal, Okay. et al. Probabilistic Affiliation of Transients to their Hosts (PATH). Astrophys. J. 911, 95 (2021).
Gordon, A. C. et al. The demographics, stellar populations, and star formation histories of quick radio burst host galaxies: implications for the progenitors. Astrophys. J. 954, 80 (2023).
Shannon, R. M. et al. The commensal real-time ASKAP quick transient incoherent-sum survey. Publ. Astron. Soc. Aust. 42, e036 (2025).
Chime/Frb Collaboration et al. A catalog of native universe quick radio bursts from CHIME/FRB and the KKO. Astrophys. J. Suppl. Ser. 280, 6 (2025).
Bhardwaj, M. et al. Host galaxies for 4 close by CHIME/FRB sources and the native universe FRB host galaxy inhabitants. Astrophys. J. Lett. 971, L51 (2024).
Caleb, M. et al. A quick radio burst from the primary 3 billion years of the Universe. Preprint at https://doi.org/10.48550/arXiv.2508.01648 (2025).
Pastor-Marazuela, I. et al. Localisation and host galaxy identification of latest quick radio bursts with MeerKAT. Mon. Not. R. Astron. Soc. 545, staf2144 (2025).
Legislation, C. J. et al. A distant quick radio burst related to its host galaxy by the very massive array. Astrophys. J. 899, 161 (2020).
Rajwade, Okay. M. et al. A examine of two FRBs with low polarization fractions localized with the MeerTRAP transient buffer system. Mon. Not. R. Astron. Soc. 532, 3881–3892 (2024).
Li, Y. et al. A sudden change and restoration within the magnetic atmosphere round a repeating quick radio burst. Science 391, 280–284 (2026).
Cassanelli, T. et al. A quick radio burst localized at detection to an edge-on galaxy utilizing very-long-baseline interferometry. Nat. Astron. 8, 1429–1442 (2024).
Caleb, M. et al. A subarcsec localized quick radio burst with a big host galaxy dispersion measure contribution. Mon. Not. R. Astron. Soc. 524, 2064–2077 (2023).
Shah, V. et al. A repeating quick radio burst supply within the outskirts of a quiescent galaxy. Astrophys. J. Lett. 979, L21 (2025).
Chen, X.-L. et al. The host galaxy of the hyperactive repeating FRB 20240114A: behind a galaxy cluster. Astrophys. J. Lett. 980, L24 (2025).
Nimmo, Okay. et al. Milliarcsecond localization of the repeating FRB 20201124A. Astrophys. J. Lett. 927, L3 (2022).
Anna-Thomas, R. et al. Proof for a sizzling galactic halo across the andromeda galaxy utilizing quick radio bursts alongside two sightlines. Astrophys. J. 993, 221 (2025).
Ravi, V. et al. Deep synoptic array science: discovery of the host galaxy of FRB 20220912A. Astrophys. J. Lett. 949, L3 (2023).
Rajwade, Okay. M. et al. First discoveries and localizations of quick radio bursts with MeerTRAP: real-time, commensal MeerKAT survey. Mon. Not. R. Astron. Soc. 514, 1961–1974 (2022).
Lee-Waddell, Okay. et al. The host galaxy of FRB 20171020A revisited. Publ. Astron. Soc. Aust. 40, e029 (2023).
Bhardwaj, M. et al. A neighborhood universe host for the repeating quick radio burst FRB 20181030A. Astrophys. J. Lett. 919, L24 (2021).
Hanmer, Okay. Y. et al. Contemporaneous optical-radio observations of a quick radio burst in a detailed galaxy pair. Mon. Not. R. Astron. Soc. 538, 1800–1815 (2025).
Ibik, A. L. et al. Proposed host galaxies of repeating quick radio burst sources detected by CHIME/FRB. Astrophys. J. 961, 99 (2024).
Qiang, D.-C., You, Z.-Q., Yang, S., Zhu, Z.-H. & Chen, T.-W. 3D localization of FRB 20190425A for its potential host galaxy and implications. Astrophys. J. 979, 95 (2025).
Driessen, L. N. et al. FRB 20210405I: a close-by quick radio burst localized to sub-arcsecond precision with MeerKAT. Mon. Not. R. Astron. Soc. 527, 3659–3673 (2024).
Glowacki, M. et al. H I, FRB, what’s your z: the primary FRB host galaxy redshift from radio observations. Astrophys. J. Lett. 962, L13 (2024).
Kirsten, F. et al. A repeating quick radio burst supply in a globular cluster. Nature 602, 585–589 (2022).
Wang, H. et al. Measurement of the dispersion-galaxy cross-power spectrum with the second CHIME/FRB catalog. Preprint at https://arxiv.org/abs/2506.08932 (2025).
Leung, C. et al. Nulling baryonic suggestions in weak lensing surveys utilizing cross-correlations with quick radio bursts. Preprint at https://doi.org/10.48550/arXiv.2509.19514 (2025).
Mead, A. J., Brieden, S., Tröster, T. & Heymans, C. HMCODE-2020: improved modelling of non-linear cosmological energy spectra with baryonic suggestions. Mon. Not. R. Astron. Soc. 502, 1401–1422 (2021).
Anbajagane, D., Pandey, S. & Chang, C. Map-level baryonification: environment friendly modelling of higher-order correlations within the weak lensing and thermal Sunyaev–Zeldovich fields. Open J. Astrophys. 7, 108 (2024).
Behroozi, P., Wechsler, R. H., Hearin, A. P. & Conroy, C. UNIVERSEMACHINE: The correlation between galaxy development and darkish matter halo meeting from z = 0–10. Mon. Not. R. Astron. Soc. 488, 3143–3194 (2019).
Moster, B. P., Naab, T. & White, S. D. M. Galactic star formation and accretion histories from matching galaxies to darkish matter haloes. Mon. Not. R. Astron. Soc. 428, 3121–3138 (2013).
Foreman-Mackey, D., Hogg, D. W., Lang, D. & Goodman, J. emcee: the MCMC Hammer. Publ. Astron. Soc. Pac. 125, 306 (2013).
Reischke, R. & Hagstotz, S. Cosmological covariance of quick radio burst dispersions. Mon. Not. R. Astron. Soc. 524, 2237–2243 (2023).
Raveri, M. & Hu, W. Concordance and discordance in cosmology. Phys. Rev. D 99, 043506 (2019).
Kravtsov, A. V., Vikhlinin, A. A. & Meshcheryakov, A. V. Stellar mass—halo mass relation and star formation effectivity in high-mass halos. Astron. Lett. 44, 8–34 (2018).
Chiu, I. et al. Baryon content material in a pattern of 91 galaxy clusters chosen by the South Pole Telescope at 0.2 < z < 1.25. Mon. Not. R. Astron. Soc. 478, 3072–3099 (2018).
van Dokkum, P. & Conroy, C. Reconciling M/L ratios throughout cosmic time: a concordance IMF for enormous galaxies. Astrophys. J. Lett. 973, L32 (2024).
Shin, Okay. et al. Inferring the vitality and distance distributions of quick radio bursts utilizing the primary CHIME/FRB catalog. Astrophys. J. 944, 105 (2023).
Connor, L. et al. Deep synoptic array science: two quick radio burst sources in large galaxy clusters. Astrophys. J. Lett. 949, L26 (2023).
Hussaini, M. et al. A Correlation between quick radio burst dispersion measure and foreground large-scale construction. Astrophys. J. Lett. 993, L27 (2025).
Sharma, Okay. et al. Probing baryonic suggestions and cosmology with the three × 2-point statistic of quick radio bursts and galaxies. Astrophys. J. 998, 109 (2026).
Zubeldia, Í & Bolliet, B. cosmocnc: a quick, versatile, and correct framework for galaxy cluster quantity depend chance computation. J. Cosmol. Astropart. Phys. 2024, 018 (2024).
James, C. W. et al. The quick radio burst inhabitants evolves, in line with the star formation charge. Mon. Not. R. Astron. Soc. 510, L18–L23 (2022).
Aricò, G. et al. DES Y3 cosmic shear all the way down to small scales: constraints on cosmology and baryons. Astron. Astrophys. https://doi.org/10.1051/0004-6361/202346539 (2023).
Chen, A. et al. Constraining the baryonic suggestions with cosmic shear utilizing the DES 12 months-3 small-scale measurements. Mon. Not. R. Astron. Soc. 518, 5340–5355 https://doi.org/10.1093/mnras/stac3213 (2023).
Terasawa, R. et al. Exploring the baryonic impact signature within the Hyper Suprime-Cam 12 months 3 cosmic shear two-point correlations on small scales: the 𝑆8 stress stays current. Phys. Rev. D 111, 063509 https://doi.org/10.1103/PhysRevD.111.063509 (2025).
Xu, J. et al. Constraining baryonic suggestions and cosmology from DES Y3 and Planck PR4 6×2pt knowledge. I. ΛCDM fashions. Preprint at https://doi.org/10.48550/arXiv.2510.25596 (2026).
Gordon, A. C. et al. A quick radio burst in a compact galaxy group at z ≈ 1. Astrophys. J. Lett. 963, L34 (2024).
Ravi, V. et al. A quick radio burst localized to an enormous galaxy. Nature 572, 352–354 (2019).