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Bibliographic Details
Main Authors: Liseykina, T., Peganov, E., Popruzhenko, S.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2409.08134
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author Liseykina, T.
Peganov, E.
Popruzhenko, S.
author_facet Liseykina, T.
Peganov, E.
Popruzhenko, S.
contents We model numerically the ultrarelativistic dynamics of a dense plasma microtarget in a focus of several intersecting femtosecond laser pulses of multi-petawatt power each. The aim is to examine perspective future experimental approaches to the search of the Inverse Faraday Effect induced by radiation friction. We show that multi-beam configurations allow lowering the single beam peak laser power required to generate a detectable quasi-static longitudinal magnetic field excited due to the radiation reaction force. The effect is significant at angles around $10^{\rm o}$ between the beam propagation axes, almost vanishes when the angle exceeds $20^{\rm o}$, and remains rather stable with respect to variations of relative phases and amplitudes of the beams. Quantum recoil accounted within semi-classical approach is shown to considerably suppress the longitudinal magnetic field, which however remains sizable. We conclude that using four infrared femtosecond linearly polarized pulses, 15 petawatt power each, crossing at angles $\approx 10^{\rm o}$, the radiation-dominated regime of laser-plasma interaction can be experimentally demonstrated.
format Preprint
id arxiv_https___arxiv_org_abs_2409_08134
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Probing the radiation-dominated regime of laser-plasma interaction in multi-beam configurations of petawatt lasers
Liseykina, T.
Peganov, E.
Popruzhenko, S.
Plasma Physics
We model numerically the ultrarelativistic dynamics of a dense plasma microtarget in a focus of several intersecting femtosecond laser pulses of multi-petawatt power each. The aim is to examine perspective future experimental approaches to the search of the Inverse Faraday Effect induced by radiation friction. We show that multi-beam configurations allow lowering the single beam peak laser power required to generate a detectable quasi-static longitudinal magnetic field excited due to the radiation reaction force. The effect is significant at angles around $10^{\rm o}$ between the beam propagation axes, almost vanishes when the angle exceeds $20^{\rm o}$, and remains rather stable with respect to variations of relative phases and amplitudes of the beams. Quantum recoil accounted within semi-classical approach is shown to considerably suppress the longitudinal magnetic field, which however remains sizable. We conclude that using four infrared femtosecond linearly polarized pulses, 15 petawatt power each, crossing at angles $\approx 10^{\rm o}$, the radiation-dominated regime of laser-plasma interaction can be experimentally demonstrated.
title Probing the radiation-dominated regime of laser-plasma interaction in multi-beam configurations of petawatt lasers
topic Plasma Physics
url https://arxiv.org/abs/2409.08134