Ion Temperature Anisotropy Limits from Magnetic Curvature Scattering in Magnetotail Reconnection Jets

Fuente: arXiv
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Main Authors: Richard, Louis, Artemyev, Anton V., Norgren, Cecilia, An, Xin, Kamaletdinov, Sergey R., Khotyaintsev, Yuri V.
Format: Preprint
Published: 2025
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_version_ 1866908783076179968
author Richard, Louis
Artemyev, Anton V.
Norgren, Cecilia
An, Xin
Kamaletdinov, Sergey R.
Khotyaintsev, Yuri V.
author_facet Richard, Louis
Artemyev, Anton V.
Norgren, Cecilia
An, Xin
Kamaletdinov, Sergey R.
Khotyaintsev, Yuri V.
contents In collisionless plasmas, relaxation of the deviations of ion velocity distribution functions (VDFs) from local thermodynamic equilibrium occurs through particle interactions with electromagnetic fields. In particular, in the Earth's magnetotail, the deviations of the ion VDFs, typically consisting of multiple components, from the equilibrium must be limited to maintain stability of the current sheet. Curvature scattering is a leading candidate mechanism to limit such deviations, but its role remains insufficiently understood. We investigate the limits of ion temperature anisotropy in a magnetotail-like configuration by modeling a quasi-1D current sheet with a finite magnetic field curvature and three ion populations. We derive analytical thresholds for anisotropy based on current sheet stability and validate against spacecraft observations and numerical simulations. Our findings demonstrate that curvature scattering imposes limits on ion anisotropies, thereby maintaining the stability of the current sheet.
format Preprint
id arxiv_https___arxiv_org_abs_2511_18956
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ion Temperature Anisotropy Limits from Magnetic Curvature Scattering in Magnetotail Reconnection Jets
Richard, Louis
Artemyev, Anton V.
Norgren, Cecilia
An, Xin
Kamaletdinov, Sergey R.
Khotyaintsev, Yuri V.
Plasma Physics
In collisionless plasmas, relaxation of the deviations of ion velocity distribution functions (VDFs) from local thermodynamic equilibrium occurs through particle interactions with electromagnetic fields. In particular, in the Earth's magnetotail, the deviations of the ion VDFs, typically consisting of multiple components, from the equilibrium must be limited to maintain stability of the current sheet. Curvature scattering is a leading candidate mechanism to limit such deviations, but its role remains insufficiently understood. We investigate the limits of ion temperature anisotropy in a magnetotail-like configuration by modeling a quasi-1D current sheet with a finite magnetic field curvature and three ion populations. We derive analytical thresholds for anisotropy based on current sheet stability and validate against spacecraft observations and numerical simulations. Our findings demonstrate that curvature scattering imposes limits on ion anisotropies, thereby maintaining the stability of the current sheet.
title Ion Temperature Anisotropy Limits from Magnetic Curvature Scattering in Magnetotail Reconnection Jets
topic Plasma Physics
url https://arxiv.org/abs/2511.18956