Weibel- and non-resonant Whistler wave growth in an expanding plasma in a 1D simulation geometry

Fuente: arXiv
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Autori principali: Dieckmann, M E, Palodhi, L, Fegan, C, Borghesi, M
Natura: Preprint
Pubblicazione: 2024
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author Dieckmann, M E
Palodhi, L
Fegan, C
Borghesi, M
author_facet Dieckmann, M E
Palodhi, L
Fegan, C
Borghesi, M
contents Ablating a target with an ultraintense laser pulse can create a cloud of collisionless plasma. A density ramp forms, in which the plasma density decreases and the ion's mean speed increases with distance from the plasma source. Its width increases with time. Electrons lose energy in the ion's expansion direction, which gives them a temperature anisotropy. We study with one-dimensional particle-in-cell simulations the expansion of a dense plasma into a dilute one, yielding a density ramp similar to that in laser plasma experiments and a thermal-anisotropy-driven instability. Non-propagating Weibel-type modes grow in the simulation with no initial magnetic field. Their magnetic field diffuses across the the shock and expands upstream. Circularly polarized propagating Whistler waves grow in a second simulation, in which a magnetic field is aligned with the ion expansion direction. Both wave modes are driven by non-resonant instabilities, they have a similar exponential growth rates, and they can leave the density ramp and expand into the dilute plasma. Their large magnetic amplitude should make them detectable in experimental settings.
format Preprint
id arxiv_https___arxiv_org_abs_2402_03925
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Weibel- and non-resonant Whistler wave growth in an expanding plasma in a 1D simulation geometry
Dieckmann, M E
Palodhi, L
Fegan, C
Borghesi, M
Plasma Physics
Ablating a target with an ultraintense laser pulse can create a cloud of collisionless plasma. A density ramp forms, in which the plasma density decreases and the ion's mean speed increases with distance from the plasma source. Its width increases with time. Electrons lose energy in the ion's expansion direction, which gives them a temperature anisotropy. We study with one-dimensional particle-in-cell simulations the expansion of a dense plasma into a dilute one, yielding a density ramp similar to that in laser plasma experiments and a thermal-anisotropy-driven instability. Non-propagating Weibel-type modes grow in the simulation with no initial magnetic field. Their magnetic field diffuses across the the shock and expands upstream. Circularly polarized propagating Whistler waves grow in a second simulation, in which a magnetic field is aligned with the ion expansion direction. Both wave modes are driven by non-resonant instabilities, they have a similar exponential growth rates, and they can leave the density ramp and expand into the dilute plasma. Their large magnetic amplitude should make them detectable in experimental settings.
title Weibel- and non-resonant Whistler wave growth in an expanding plasma in a 1D simulation geometry
topic Plasma Physics
url https://arxiv.org/abs/2402.03925