Energizing charged particles by an orbit instability in a slowly rotating magnetic field

Fuente: arXiv
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Main Authors: Palmerduca, E., Qin, H., Cohen, S. A.
Format: Preprint
Published: 2022
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author Palmerduca, E.
Qin, H.
Cohen, S. A.
author_facet Palmerduca, E.
Qin, H.
Cohen, S. A.
contents The stability of charged particle motion in a uniform magnetic field with an added spatially uniform transverse rotating magnetic field (RMF) is studied analytically. It is found that the stability diagram of a single-particle's orbit depends critically on the chosen boundary conditions. We show that for many boundary conditions and wide regions in the parameter space, RMFs oscillating far below the cyclotron frequency can cause linear instabilities in the motion which break $μ$-invariance and energize particles. Such energization may appear at odds with the adiabatic invariance of $μ$; however, adiabatic invariance is an asymptotic result, and does not preclude such heating by magnetic fields oscillating at slow frequencies. This mechanism may contribute to heating in the edge plasma of field-reversed configurations (FRCs) in rotamak-FRC experiments. Furthermore, these RMF-driven instabilities may significantly enhance azimuthal current drive during the formation of FRCs in such devices.
format Preprint
id arxiv_https___arxiv_org_abs_2207_13773
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Energizing charged particles by an orbit instability in a slowly rotating magnetic field
Palmerduca, E.
Qin, H.
Cohen, S. A.
Plasma Physics
The stability of charged particle motion in a uniform magnetic field with an added spatially uniform transverse rotating magnetic field (RMF) is studied analytically. It is found that the stability diagram of a single-particle's orbit depends critically on the chosen boundary conditions. We show that for many boundary conditions and wide regions in the parameter space, RMFs oscillating far below the cyclotron frequency can cause linear instabilities in the motion which break $μ$-invariance and energize particles. Such energization may appear at odds with the adiabatic invariance of $μ$; however, adiabatic invariance is an asymptotic result, and does not preclude such heating by magnetic fields oscillating at slow frequencies. This mechanism may contribute to heating in the edge plasma of field-reversed configurations (FRCs) in rotamak-FRC experiments. Furthermore, these RMF-driven instabilities may significantly enhance azimuthal current drive during the formation of FRCs in such devices.
title Energizing charged particles by an orbit instability in a slowly rotating magnetic field
topic Plasma Physics
url https://arxiv.org/abs/2207.13773