Magnetic Fields in Multiphase Turbulence: Impacts on Dynamics and Structure

Fuente: arXiv
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Main Authors: Das, Hitesh Kishore, Gronke, Max
Format: Preprint
Published: 2023
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author Das, Hitesh Kishore
Gronke, Max
author_facet Das, Hitesh Kishore
Gronke, Max
contents Both multiphase gas and magnetic fields are ubiquitous in astrophysics. However, the influence of magnetic fields on mixing of the different phases is still largely unexplored. In this study, we use both turbulent radiative mixing layer (TRML) and turbulent box simulations to examine the effects of magnetic fields on cold gas growth rates, survival, and the morphology of the multiphase gas. Our findings indicate that, in general, magnetic fields suppress mixing in TRMLs while turbulent box simulations show comparatively marginal differences in growth rates and survival of the cold gas. We reconcile these two seemingly contrasting results by demonstrating that similar turbulent properties result in comparable mixing -- regardless of the presence or absence of magnetic fields. We, furthermore, find the cold gas clump size distribution to be independent of the magnetic fields but the clumps are more filamentary in the MHD case. Synthetic MgII absorption lines support this picture being marginally different with and without magnetic fields; both cases aligning well with observations. We also examine the magnetic field strength and structure in turbulent boxes. We generally observe a higher mean magnetic field in the cold gas phase due to flux freezing and reveal fractal-like magnetic field lines in a turbulent environment.
format Preprint
id arxiv_https___arxiv_org_abs_2307_06411
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Magnetic Fields in Multiphase Turbulence: Impacts on Dynamics and Structure
Das, Hitesh Kishore
Gronke, Max
Astrophysics of Galaxies
Solar and Stellar Astrophysics
Fluid Dynamics
Both multiphase gas and magnetic fields are ubiquitous in astrophysics. However, the influence of magnetic fields on mixing of the different phases is still largely unexplored. In this study, we use both turbulent radiative mixing layer (TRML) and turbulent box simulations to examine the effects of magnetic fields on cold gas growth rates, survival, and the morphology of the multiphase gas. Our findings indicate that, in general, magnetic fields suppress mixing in TRMLs while turbulent box simulations show comparatively marginal differences in growth rates and survival of the cold gas. We reconcile these two seemingly contrasting results by demonstrating that similar turbulent properties result in comparable mixing -- regardless of the presence or absence of magnetic fields. We, furthermore, find the cold gas clump size distribution to be independent of the magnetic fields but the clumps are more filamentary in the MHD case. Synthetic MgII absorption lines support this picture being marginally different with and without magnetic fields; both cases aligning well with observations. We also examine the magnetic field strength and structure in turbulent boxes. We generally observe a higher mean magnetic field in the cold gas phase due to flux freezing and reveal fractal-like magnetic field lines in a turbulent environment.
title Magnetic Fields in Multiphase Turbulence: Impacts on Dynamics and Structure
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
Fluid Dynamics
url https://arxiv.org/abs/2307.06411