Turbulent dynamos in a collapsing cloud

Fuente: arXiv
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Autores principales: P, Muhammed Irshad, Bhat, Pallavi, Subramanian, Kandaswamy, Shukurov, Anvar
Formato: Preprint
Publicado: 2025
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author P, Muhammed Irshad
Bhat, Pallavi
Subramanian, Kandaswamy
Shukurov, Anvar
author_facet P, Muhammed Irshad
Bhat, Pallavi
Subramanian, Kandaswamy
Shukurov, Anvar
contents The amplification of magnetic fields is crucial for understanding the observed magnetization of stars and galaxies. Turbulent dynamo is the primary mechanism responsible for that but the understanding of its action in a collapsing environment is still rudimentary and relies on limited numerical experiments. We develop an analytical framework and perform numerical simulations to investigate the behavior of small-scale and large-scale dynamos in a collapsing turbulent cloud. This approach is also applicable to expanding environments and facilitates the application of standard dynamo theory to evolving systems. Using a supercomoving formulation of the magnetohydrodynamic (MHD) equations, we demonstrate that dynamo action in a collapsing background leads to a super-exponential growth of magnetic fields in time, significantly faster than the exponential growth seen in stationary turbulence. The enhancement is mainly due to the increasing eddy turnover rate during the collapse, which boosts the instantaneous growth rate of the dynamo. We also show that the scaling of final saturated magnetic field strength with density robustly exceeds the expectation from considerations of pure flux-freezing. Apart from establishing a formal framework for studying magnetic field evolution in collapsing (or expanding) turbulent plasmas, these findings suggest that during star and galaxy formation magnetic fields can become dynamically relevant much earlier than previously thought.
format Preprint
id arxiv_https___arxiv_org_abs_2503_19131
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Turbulent dynamos in a collapsing cloud
P, Muhammed Irshad
Bhat, Pallavi
Subramanian, Kandaswamy
Shukurov, Anvar
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
Solar and Stellar Astrophysics
Plasma Physics
The amplification of magnetic fields is crucial for understanding the observed magnetization of stars and galaxies. Turbulent dynamo is the primary mechanism responsible for that but the understanding of its action in a collapsing environment is still rudimentary and relies on limited numerical experiments. We develop an analytical framework and perform numerical simulations to investigate the behavior of small-scale and large-scale dynamos in a collapsing turbulent cloud. This approach is also applicable to expanding environments and facilitates the application of standard dynamo theory to evolving systems. Using a supercomoving formulation of the magnetohydrodynamic (MHD) equations, we demonstrate that dynamo action in a collapsing background leads to a super-exponential growth of magnetic fields in time, significantly faster than the exponential growth seen in stationary turbulence. The enhancement is mainly due to the increasing eddy turnover rate during the collapse, which boosts the instantaneous growth rate of the dynamo. We also show that the scaling of final saturated magnetic field strength with density robustly exceeds the expectation from considerations of pure flux-freezing. Apart from establishing a formal framework for studying magnetic field evolution in collapsing (or expanding) turbulent plasmas, these findings suggest that during star and galaxy formation magnetic fields can become dynamically relevant much earlier than previously thought.
title Turbulent dynamos in a collapsing cloud
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
Solar and Stellar Astrophysics
Plasma Physics
url https://arxiv.org/abs/2503.19131