Please use this identifier to cite or link to this item: http://hdl.handle.net/2289/6975
Title: Cosmic ray heating of intergalactic medium: patchy or uniform?
Authors: Jana, Ranita
Nath, Biman B.
Issue Date: 1-Sep-2018
Publisher: Oxford University Press on behalf of the Royal Astronomical Society
Citation: Monthly Notices of the Royal Astronomical Society, 2018, Vol. 479; p153–161
Abstract: We study the heating of the intergalactic medium (IGM) surrounding high redshift star-forming galaxies due to cosmic rays (CR). We take into account the diffusion of low-energy CR and study the patchiness of the resulting heating. We discuss the case of IGM heating around a high redshift minihalo (z∼ 10–20, M ∼ 105–107 M⊙) and put an upper limit on the diffusion coefficient D ≤ 1 × 1026 cm2 s−1 for the heating to be inhomogeneous at z∼ 10 and D ≤ 5–6 × 1026 cm2 s−1 at z∼ 20. For typical values of D, our results suggest uniform heating by CR at high redshift, although there are uncertainties in magnetic field and other CR parameters. We also discuss two cases with continuous star formation, one in which the star formation rate (SFR) of a galaxy is high enough to make the IGM in the vicinity photoionized, and another in which the SFR is low enough to keep it neutral but high enough to cause significant heating by CR protons. In the neutral case (low SFR), we find that the resulting heating can make the gas hotter than the cosmic microwave background radiation for D < 1030 cm2 s−1, within a few kpc of the galaxy, and unlikely to be probed by near future radio observations. In the case of photoionized IGM (high SFR), the resulting heating of the gas in the vicinity of high redshift (z∼ 4) galaxies of mass ≥ 1012 M⊙ can suppress gas infall into the galaxy. At lower redshifts (z ∼ 0), an SFR of ∼1 M⊙ yr−1 can suppress the infall into galaxies of mass ≤1010 M⊙.
Description: Restricted Access. An open-access version is available at arXiv.org (one of the alternative locations)
URI: http://hdl.handle.net/2289/6975
ISSN: 0035-8711
1365-2966 - (online)
Alternative Location: http://adsabs.harvard.edu/abs/2018MNRAS.479..153J
https://arxiv.org/abs/1806.01295
https://doi.org/10.1093/mnras/sty1481
Copyright: 2018 The Author(s)
Appears in Collections:Research Papers (A&A)

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