Properties of the Circumgalactic Medium in Cosmic Ray-Dominated Galaxy Halos
Suoqing Ji, T. K. Chan, Cameron B. Hummels, Philip F. Hopkins,, Jonathan Stern, Du\v{s}an Kere\v{s}, Eliot Quataert, Claude-Andr\'e, Faucher-Gigu\`ere, Norman Murray

TL;DR
This study uses FIRE-2 simulations to explore how cosmic rays influence the properties and ionization states of the circumgalactic medium in galaxy halos, revealing a CR-dominated cool phase with distinct pressure and ionization characteristics.
Contribution
It introduces a detailed cosmic ray treatment in galaxy halo simulations, showing CRs can dominate CGM pressure and alter its thermal and ionization structure compared to non-CR models.
Findings
CRs dominate CGM pressure in Milky Way-mass halos at low redshift.
The cool gas phase is volume-filling and primarily photo-ionized.
CR pressure gradients balance gravity, shaping the gas density profile.
Abstract
We investigate the impact of cosmic rays (CRs) on the circumgalactic medium (CGM) in FIRE-2 simulations, for ultra-faint dwarf through Milky Way (MW)-mass halos hosting star-forming (SF) galaxies. Our CR treatment includes injection by supernovae, anisotropic streaming and diffusion along magnetic field lines, collisional and streaming losses, with constant parallel diffusivity chosen to match -ray observations. With this, CRs become more important at larger halo masses and lower redshifts, and dominate the pressure in the CGM in MW-mass halos at . The gas in these "CR-dominated" halos differs significantly from runs without CRs: the gas is primarily cool (a few K), and the cool phase is volume-filling and has a thermal pressure below that needed for virial or local thermal pressure balance.…
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