Relaxation to universal non-Maxwellian equilibria in a collisionless plasma

R Robert J. Ewart (Rudolf Peierls Centre for Theoretical Physics) M Michael L. Nastac (Rudolf Peierls Centre for Theoretical Physics) P Pablo J. Bilbao (GoLP/Instituto de Plasmas e Fusão Nuclear) T Thales Silva (Group of Lasers and Plasmas/Instituto de Plasmas e Fusão Nuclear) L Luis O. Silva (GoLP/Instituto de Plasmas e Fusão Nuclear) A Alexander A. Schekochihin (Department of Physics)

Abstract

Generic equilibria are derived for turbulent relaxing plasmas via an entropy-maximization procedure that accounts for the short-time conservation of certain collisionless invariants. The conservation of these collisionless invariants endows the system with a partial “memory” of its prior conditions but is imperfect on long time scales due to the development of a turbulent cascade to small scales, which breaks the precise conservation of phase volume, making this memory imprecise. The equilibria are still determined by the short-time collisionless invariants, but the invariants themselves are driven to a universal form by the nature of the turbulence. This is numerically confirmed for the case of beam instabilities in one-dimensional electrostatic plasmas, where sufficiently strong turbulence appears to cause the distribution function of particle energies to develop a universal power-law tail, with exponent −2.

Article Details

Volume / Issue Vol. 122, Issue 17
Published April 29, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (6)

R

Robert J. Ewart

Rudolf Peierls Centre for Theoretical Physics

M

Michael L. Nastac

Rudolf Peierls Centre for Theoretical Physics

P

Pablo J. Bilbao

GoLP/Instituto de Plasmas e Fusão Nuclear

T

Thales Silva

Group of Lasers and Plasmas/Instituto de Plasmas e Fusão Nuclear

L

Luis O. Silva

GoLP/Instituto de Plasmas e Fusão Nuclear

A

Alexander A. Schekochihin

Department of Physics