Efficiency of Thermal Conduction in a Magnetised Circumgalactic Medium
arXiv:2101.04684 · doi:10.1093/mnras/stab110
Abstract
The large temperature difference between cold gas clouds around galaxies and the hot halos that they are moving through suggests that thermal conduction could play an important role in the circumgalactic medium. However, thermal conduction in the presence of a magnetic field is highly anisotropic, being strongly suppressed in the direction perpendicular to the magnetic field lines. This is commonly modelled by using a simple prescription that assumes that thermal conduction is isotropic at a certain efficiency , but its precise value is largely unconstrained. We investigate the efficiency of thermal conduction by comparing the evolution of 3D hydrodynamical (HD) simulations of cold clouds moving through a hot medium, using artificially suppressed isotropic thermal conduction (with ), against 3D magnetohydrodynamical (MHD) simulations with (true) anisotropic thermal conduction. Our main diagnostic is the time evolution of the amount of cold gas in conditions representative of the lower (close to the disc) circumgalactic medium of a Milky Way-like galaxy. We find that in almost every HD and MHD run, the amount of cold gas increases with time, indicating that hot gas condensation is an important phenomenon that can contribute to gas accretion onto galaxies. For the most realistic orientations of the magnetic field with respect to the cloud motion we find that is in the range 0.03 -- 0.15. Thermal conduction is thus always highly suppressed, but its effect on the cloud evolution is generally not negligible.
References in corpus (27)
- Array Programming with NumPy
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- PLUTO: a Numerical Code for Computational Astrophysics
- The Circumgalactic Medium
- Cold gas accretion in galaxies
- The Search for the Missing Baryons at Low Redshift
- Characterizing the Circumgalactic Medium of Nearby Galaxies with HST/COS and HST/STIS Absorption-Line Spectroscopy
- Accretion of gas onto nearby spiral galaxies
- Draping of Cluster Magnetic Fields over Bullets and Bubbles -- Morphology and Dynamic Effects
- Rotation Measures of Extragalactic Sources Behind the Southern Galactic Plane: New Insights into the Large-Scale Magnetic Field of the Inner Milky Way
- HI holes and high-velocity clouds in the spiral galaxy NGC 6946
- Distances to Galactic high-velocity clouds. Complex C
- Efficiency of gas cooling and accretion at the disc-corona interface
- The importance of magnetic-field-oriented thermal conduction in the interaction of SNR shocks with interstellar clouds
- Gas accretion and galactic fountain flows in the Auriga cosmological simulations: angular momentum and metal re-distribution
- The Magnetohydrodynamics of Shock-Cloud Interaction in Three Dimensions
- The origin of the high-velocity cloud complex C
- Constraining models of the large scale Galactic magnetic field with WMAP5 polarization data and extragalactic Rotation Measure sources
- Probing the Hot X-ray Corona around the Massive Spiral Galaxy, NGC 6753, Using Deep XMM-Newton observations
- Galactic fountains and their connection with high and intermediate velocity clouds
- The evolution of interstellar clouds in a streaming hot plasma including heat conduction
- TPCI: The PLUTO-CLOUDY Interface
- Galactic Dynamos and Galactic Winds
- The angular momentum of cosmological coronae and the inside-out growth of spiral galaxies
- The Magellanic System: the puzzle of the leading gas stream
- Constraining the Magnetic Field of the Smith High Velocity Cloud using Faraday rotation
- Magnetized High Velocity Clouds in the Galactic Halo: A New Distance Constraint
Cited by in corpus (11)
- Intermediate- and high-velocity clouds in the Milky Way II: evidence for a Galactic fountain with collimated outflows and diffuse inflows
- The Launching of Cold Clouds by Galaxy Outflows V: The Role of Anisotropic Thermal Conduction
- Fountain-driven gas accretion feeding star formation over the disc of NGC 2403
- Directly constraining the spatial coherence of the circumgalactic medium
- Magnetic field draping around clumpy high-velocity clouds in galactic halo
- Clouds accreting from the IGM are not able to feed the star formation of low-redshift disc galaxies
- FEASTS Combined with Interferometry. III. The Low Column Density HI Around M51 and Possibility of Turbulent-mixing Gas Accretion
- Dust in Clusters of Galaxies
- The Milky Way satellite galaxy Leo T: A perturbed cored dwarf
- Fading in the Flow: Suppression of cold gas growth in expanding galactic outflows
- The imprint of magnetic fields on absorption spectra from circumgalactic wind-cloud systems