English

Time-resolved fast turbulent dynamo in a laser plasma

Plasma Physics 2021-04-28 v1 Astrophysics of Galaxies

Abstract

Understanding magnetic-field generation and amplification in turbulent plasma is essential to account for observations of magnetic fields in the universe. A theoretical framework attributing the origin and sustainment of these fields to the so-called fluctuation dynamo was recently validated by experiments on laser facilities in low-magnetic-Prandtl-number plasmas (Pm<1\mathrm{Pm} < 1). However, the same framework proposes that the fluctuation dynamo should operate differently when Pm1\mathrm{Pm} \gtrsim 1, the regime relevant to many astrophysical environments such as the intracluster medium of galaxy clusters. This paper reports a new experiment that creates a laboratory Pm1\mathrm{Pm} \gtrsim 1 plasma dynamo for the first time. We provide a time-resolved characterization of the plasma's evolution, measuring temperatures, densities, flow velocities and magnetic fields, which allows us to explore various stages of the fluctuation dynamo's operation. The magnetic energy in structures with characteristic scales close to the driving scale of the stochastic motions is found to increase by almost three orders of magnitude from its initial value and saturate dynamically. It is shown that the growth of these fields occurs exponentially at a rate that is much greater than the turnover rate of the driving-scale stochastic motions. Our results point to the possibility that plasma turbulence produced by strong shear can generate fields more efficiently at the driving scale than anticipated by idealized MHD simulations of the nonhelical fluctuation dynamo; this finding could help explain the large-scale fields inferred from observations of astrophysical systems.

Keywords

Cite

@article{arxiv.2007.12837,
  title  = {Time-resolved fast turbulent dynamo in a laser plasma},
  author = {A. F. A. Bott and P. Tzeferacos and L. Chen and C. A. J. Palmer and A. Rigby and A. Bell and R. Bingham and A. Birkel and C. Graziani and D. H. Froula and J. Katz and M. Koenig and M. W. Kunz and C. K. Li and J. Meinecke and F. Miniati and R. Petrasso and H. -S. Park and B. A. Remington and B. Reville and J. S. Ross and D. Ryu and D. Ryutov and F. Séguin and T. G. White and A. A. Schekochihin and D. Q. Lamb and G. Gregori},
  journal= {arXiv preprint arXiv:2007.12837},
  year   = {2021}
}

Comments

12 pages, 9 figures

R2 v1 2026-06-23T17:23:46.599Z