Amplification and saturation of turbulent magnetic field in collapsing primordial gas clouds

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Higashi, Sho, Susa, Hajime, Federrath, Christoph, Chiaki, Gen
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866910342977683456
author Higashi, Sho
Susa, Hajime
Federrath, Christoph
Chiaki, Gen
author_facet Higashi, Sho
Susa, Hajime
Federrath, Christoph
Chiaki, Gen
contents Recent numerical studies suggest that magnetic fields play an important role in primordial star formation in the early universe. However, the detailed evolution of the magnetic field in the collapse phase still has uncertainties because of the complicated physics associated with turbulence in a collapsing magnetized system. Here, we perform a suite of numerical MHD simulations that follow the collapse of magnetized, turbulent primordial gas clouds to investigate the evolution of the magnetic field associated with the turbulence, assuming a polytropic equation of state with exponent $γ_{\rm eff}$ and with various numerical resolutions. In addition, we generalize the analytic theory of magnetic field growth/saturation so that it can deal with various exponents $γ_{\rm eff}$ and turbulence energy spectra. We find that the numerical results are well reproduced by the theory for various $γ_{\rm eff}$ through the collapse phase during the formation of the first stars. The magnetic field is eventually amplified by a factor of $10^{12}$ -- $10^{15}$ due to kinematic and non-linear turbulent dynamo effects and reaches 3% -- 100% of the equipartition level, depending on $γ_{\rm eff}$. We also find that the transition between the kinematic and non-linear stages can be analytically estimated. These results indicate that the strong magnetic field accompanied by supersonic turbulence is a general property and suggest that it can play a crucial role in the formation of the first stars.
format Preprint
id arxiv_https___arxiv_org_abs_2401_09739
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Amplification and saturation of turbulent magnetic field in collapsing primordial gas clouds
Higashi, Sho
Susa, Hajime
Federrath, Christoph
Chiaki, Gen
Astrophysics of Galaxies
Recent numerical studies suggest that magnetic fields play an important role in primordial star formation in the early universe. However, the detailed evolution of the magnetic field in the collapse phase still has uncertainties because of the complicated physics associated with turbulence in a collapsing magnetized system. Here, we perform a suite of numerical MHD simulations that follow the collapse of magnetized, turbulent primordial gas clouds to investigate the evolution of the magnetic field associated with the turbulence, assuming a polytropic equation of state with exponent $γ_{\rm eff}$ and with various numerical resolutions. In addition, we generalize the analytic theory of magnetic field growth/saturation so that it can deal with various exponents $γ_{\rm eff}$ and turbulence energy spectra. We find that the numerical results are well reproduced by the theory for various $γ_{\rm eff}$ through the collapse phase during the formation of the first stars. The magnetic field is eventually amplified by a factor of $10^{12}$ -- $10^{15}$ due to kinematic and non-linear turbulent dynamo effects and reaches 3% -- 100% of the equipartition level, depending on $γ_{\rm eff}$. We also find that the transition between the kinematic and non-linear stages can be analytically estimated. These results indicate that the strong magnetic field accompanied by supersonic turbulence is a general property and suggest that it can play a crucial role in the formation of the first stars.
title Amplification and saturation of turbulent magnetic field in collapsing primordial gas clouds
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2401.09739