The Impact of Cosmic Rays on Thermal Instability in the Circumgalactic Medium
arXiv:2008.04915 · doi:10.3847/1538-4357/abbad2
Abstract
Large reservoirs of cold (~ 10^4 K) gas exist out to and beyond the virial radius in the circumgalactic medium (CGM) of all types of galaxies. Photoionization modeling suggests that cold CGM gas has significantly lower densities than expected by theoretical predictions based on thermal pressure equilibrium with hot CGM gas. In this work, we investigate the impact of cosmic ray physics on the formation of cold gas via thermal instability. We use idealized three-dimensional magnetohydrodynamic simulations to follow the evolution of thermally unstable gas in a gravitationally stratified medium. We find that cosmic ray pressure lowers the density and increases the size of cold gas clouds formed through thermal instability. We develop a simple model for how the cold cloud sizes and the relative densities of cold and hot gas depend on cosmic ray pressure. Cosmic ray pressure can help counteract gravity to keep cold gas in the CGM for longer, thereby increasing the predicted cold mass fraction and decreasing the predicted cold gas inflow rates. Efficient cosmic ray transport, by streaming or diffusion, redistributes cosmic ray pressure from the cold gas to the background medium, resulting in cold gas properties that are in-between those predicted by simulations with inefficient transport and simulations without cosmic rays. We show that cosmic rays can significantly reduce galactic accretion rates and resolve the tension between theoretical models and observational constraints on the properties of cold CGM gas.
Accepted for publication in ApJ; 28 pages, 15 figures. Simulation movies can be found at https://www.irynabutsky.me/movies
References in corpus (16)
- The Circumgalactic Medium
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- Feedback Heating by Cosmic Rays in Clusters of Galaxies
- Characterizing the Circumgalactic Medium of Nearby Galaxies with HST/COS and HST/STIS Absorption-Line Spectroscopy
- Regulation of star formation in giant galaxies by precipitation, feedback, and conduction
- Magnetized Gas Clouds can Survive Acceleration by a Hot Wind
- Resolving small-scale cold circumgalactic gas in TNG50
- Metal-enriched, sub-kiloparsec gas clumps in the circumgalactic medium of a faint z = 2.5 galaxy
- Cosmic ray-driven galactic winds: streaming or diffusion?
- Relativistic Hydrodynamic Flows Using Spatial and Temporal Adaptive Structured Mesh Refinement
- Multiphase gas in the circumgalactic medium: relative role of and density fluctuations
- Constraining Magnetic Fields in the Circumgalactic Medium
- Circumgalactic Pressure Profiles Indicate Precipitation-Limited Atmospheres for
- Mapping Outflowing Gas in the Fermi Bubbles: a UV Absorption Survey of the Galactic Nuclear Wind
- The cold mode: A phenomenological model for the evolution of density perturbations in the intracluster medium
- Role of cosmic rays in the early stages of galactic outflows
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