Missing baryons recovered: a measurement of the gas fraction in galaxies and groups with the kinematic Sunyaev-Zel'dovich effect and CMB lensing
Boryana Hadzhiyska, Simone Ferraro, Gerrit S. Farren, Noah Sailer, Rongpu Zhou

TL;DR
This study uses CMB lensing and galaxy surveys to measure halo masses and gas fractions in galaxy groups, addressing the missing baryon problem and revealing stronger baryonic feedback than simulations suggest.
Contribution
It provides an independent, lensing-based calibration of halo masses and compares gas profiles with total mass profiles, advancing understanding of baryon distribution in galaxy groups.
Findings
Recovered all baryons at large radii from galaxy groups.
Observed gas fractions are systematically lower than simulations by over 4 sigma.
Confirmed stronger baryonic feedback in the real universe compared to models.
Abstract
We present new constraints on the halo masses and matter density profiles of DESI galaxy groups by cross-correlating samples of Luminous Red Galaxies (LRGs) and Bright Galaxy Survey (BGS) galaxies with the publicly available CMB lensing convergence map from ACT DR6. This provides an independent, lensing-based calibration of halo masses, complementary to methods relying on clustering or dynamics. We derive constraints on the mean halo mass for three DESI-selected samples, finding , 13.03 and 13.02 for the Main LRG, Extended LRG, and BGS samples, respectively. Using a halo model approach, we also compare the projected galaxy-matter density profiles with previously reported gas profiles inferred from measurements of the kinematic Sunyaev-Zel'dovich (kSZ) effect. This work addresses one of the key uncertainties in interpreting kSZ signals -- the…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Cosmology and Gravitation Theories
