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Virial shocks are suppressed in cosmic ray-dominated galaxy haloes

Ji, Suoqing; Kereš, Dušan; Chan, TK; Stern, Jonathan; Hummels, Cameron B; Hopkins, Philip F; Quataert, Eliot; Faucher-Giguère, Claude-André

Virial shocks are suppressed in cosmic ray-dominated galaxy haloes Thumbnail


Authors

Suoqing Ji

Dušan Kereš

Jonathan Stern

Cameron B Hummels

Philip F Hopkins

Eliot Quataert

Claude-André Faucher-Giguère



Abstract

We study the impact of cosmic rays (CRs) on the structure of virial shocks, using a large suite of high-resolution cosmological FIRE-2 simulations accounting for CR injection by supernovae. In Milky Way-mass, low-redshift (z ≲ 1−2) haloes, which are expected to form ‘hot haloes’ with slowly cooling gas in quasi-hydrostatic equilibrium (with a stable virial shock), our simulations without CRs do exhibit clear virial shocks. The cooler phase condensing out from inflows becomes pressure confined to overdense clumps, embedded in low-density, volume-filling hot gas with volume-weighted cooling time longer than inflow time. The gas thus transitions sharply from cool free-falling inflow, to hot and thermal-pressure supported at approximately the virial radius (≈Rvir), and the shock is quasi-spherical. With CRs, we previously argued that haloes in this particular mass and redshift range build up CR-pressure-dominated gaseous haloes. Here, we show that when CR pressure dominates over thermal pressure, there is no significant virial shock. Instead, inflowing gas is gradually decelerated by the CR pressure gradient and the gas is relatively subsonic out to and even beyond Rvir. Rapid cooling also maintains subvirial temperatures in the inflowing gas within ∼Rvir.

Citation

Ji, S., Kereš, D., Chan, T., Stern, J., Hummels, C. B., Hopkins, P. F., …Faucher-Giguère, C. (2021). Virial shocks are suppressed in cosmic ray-dominated galaxy haloes. Monthly Notices of the Royal Astronomical Society, 505(1), 259-273. https://doi.org/10.1093/mnras/stab1264

Journal Article Type Article
Acceptance Date Apr 28, 2021
Online Publication Date May 4, 2021
Publication Date 2021-07
Deposit Date Sep 21, 2021
Publicly Available Date Sep 21, 2021
Journal Monthly Notices of the Royal Astronomical Society
Print ISSN 0035-8711
Electronic ISSN 1365-2966
Publisher Royal Astronomical Society
Peer Reviewed Peer Reviewed
Volume 505
Issue 1
Pages 259-273
DOI https://doi.org/10.1093/mnras/stab1264

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Copyright Statement
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ©: 2021 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.





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