paper

eROSITA cosmology with galaxy groups: Hot gas budget out to the virial radius

arXiv:2608.17735

Abstract

Non-gravitational processes that expel hot gas beyond the virial regions of groups and clusters of galaxies, known collectively as baryonic feedback, play a key role in reshaping the matter distribution of the Universe on Mpc scales. We use eROSITA observations of a complete sample of 25 galaxy groups selected from the first public release of the eROSITA-DE data (eRASS1) and identified with the Two Micron Redshift Survey optical group catalogue (2MRS). We extract and fit surface brightness (SBx) profiles and present hot gas mass and hot gas fraction profiles out to . We perform a Bayesian analysis of , , and relations, taking into account the aperture covariance effects. At , we report uniformly flat SBx profiles with a mean parameter of , steepening to beyond . We measure a sub-cosmic hot gas fraction at the median mass of our sample of . Similarly, at and the median mass , we obtain . Our and relations show significant deviations from the predictions of the strong feedback variants of the FLAMINGO simulation ( to tension), while fiducial FLAMINGO and BAHAMAS provide the closest match to our measurements. Using our measured baryon fractions and the SP(k) model, we infer a reduction in the matter power spectrum at relative to a dark matter-only universe, in agreement with fiducial FLAMINGO and BAHAMAS, while revealing a growing tension on smaller scales with the strong feedback variants.

Accepted for publication in A&A