Collimated $ γ$-flash emission along the target surface irradiated by a laser at non-grazing incidence

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Matys, M., Hadjisolomou, P., Shaisultanov, R., Valenta, P., Lamač, M., Jeong, T. M., Thistlewood, J. P., Ridgers, C. P., Pirozhkov, A. S., Bulanov, S. V.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916647612186624
author Matys, M.
Hadjisolomou, P.
Shaisultanov, R.
Valenta, P.
Lamač, M.
Jeong, T. M.
Thistlewood, J. P.
Ridgers, C. P.
Pirozhkov, A. S.
Bulanov, S. V.
author_facet Matys, M.
Hadjisolomou, P.
Shaisultanov, R.
Valenta, P.
Lamač, M.
Jeong, T. M.
Thistlewood, J. P.
Ridgers, C. P.
Pirozhkov, A. S.
Bulanov, S. V.
contents The interaction of a high-power laser with a solid target provides ways to produce beams of $γ$-photons. For normal incidence of the laser on the target the beams usually appear in a form of two lobes, which are symmetric with respect to the laser propagation axis. In this work we demonstrate via three-dimensional particle-in-cell simulations a regime where for oblique incidence the emission of a collimated $γ$-photon beam is in the direction parallel to the target surface. The process is ascribed to the interference pattern in the electromagnetic field formed by the incident and reflected laser pulse. The electromagnetic field accelerates electrons to the GeV energy level, while temporarily directing their momentum along the target surface. Consequently, they emit a collimated $γ$-photon beam in the same direction. The dependencies of $γ$-photon emission on the incident angle, laser pulse polarization, power and duration and target thickness and preplasma are also addressed in the paper. The beam directionality is important for designing future experiments. In addition, this setup causes the generation of high-order harmonics propagating along the target surface.
format Preprint
id arxiv_https___arxiv_org_abs_2410_12780
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Collimated $ γ$-flash emission along the target surface irradiated by a laser at non-grazing incidence
Matys, M.
Hadjisolomou, P.
Shaisultanov, R.
Valenta, P.
Lamač, M.
Jeong, T. M.
Thistlewood, J. P.
Ridgers, C. P.
Pirozhkov, A. S.
Bulanov, S. V.
Plasma Physics
The interaction of a high-power laser with a solid target provides ways to produce beams of $γ$-photons. For normal incidence of the laser on the target the beams usually appear in a form of two lobes, which are symmetric with respect to the laser propagation axis. In this work we demonstrate via three-dimensional particle-in-cell simulations a regime where for oblique incidence the emission of a collimated $γ$-photon beam is in the direction parallel to the target surface. The process is ascribed to the interference pattern in the electromagnetic field formed by the incident and reflected laser pulse. The electromagnetic field accelerates electrons to the GeV energy level, while temporarily directing their momentum along the target surface. Consequently, they emit a collimated $γ$-photon beam in the same direction. The dependencies of $γ$-photon emission on the incident angle, laser pulse polarization, power and duration and target thickness and preplasma are also addressed in the paper. The beam directionality is important for designing future experiments. In addition, this setup causes the generation of high-order harmonics propagating along the target surface.
title Collimated $ γ$-flash emission along the target surface irradiated by a laser at non-grazing incidence
topic Plasma Physics
url https://arxiv.org/abs/2410.12780