Decoupling acceleration and wiggling in a laser-produced Betatron source

Fuente: arXiv
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Main Authors: Gautier, Julien, Andriyash, Igor, Döpp, Andreas, Kozlova, Michaela, Matheron, Aimé, Mahieu, Benoit, Thaury, Cédric, Lahaye, Ronan, Goddet, Jean-Philippe, Tafzi, Amar, Rousseau, Pascal, Sebban, Stéphane, Rousse, Antoine, Phuoc, Kim Ta
Format: Preprint
Published: 2025
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author Gautier, Julien
Andriyash, Igor
Döpp, Andreas
Kozlova, Michaela
Matheron, Aimé
Mahieu, Benoit
Thaury, Cédric
Lahaye, Ronan
Goddet, Jean-Philippe
Tafzi, Amar
Rousseau, Pascal
Sebban, Stéphane
Rousse, Antoine
Phuoc, Kim Ta
author_facet Gautier, Julien
Andriyash, Igor
Döpp, Andreas
Kozlova, Michaela
Matheron, Aimé
Mahieu, Benoit
Thaury, Cédric
Lahaye, Ronan
Goddet, Jean-Philippe
Tafzi, Amar
Rousseau, Pascal
Sebban, Stéphane
Rousse, Antoine
Phuoc, Kim Ta
contents Betatron radiation is produced in Laser Plasma Accelerators when the electrons are accelerated and simultaneously wiggle across the propagation axis. The mechanisms of electron acceleration and X-ray radiation production follow different scaling laws, and the brightest X-ray radiation is often produced for an electron beam with a lower quality in terms of energy and divergence. Here, we report a laser-driven Betatron X-ray source where the plasma density profile is tailored in order to separate the acceleration and wiggler stages, which allows for the independent optimizations of acceleration and X-ray production. We demonstrate this concept experimentally, and show that the Betatron photon energy can be controlled by adjusting the length of the plasma wiggler. This scheme offers a path to overcome the limitations of conventional Betatron sources, enabling the production of bright, stable, energetic, and collimated X-ray beams.
format Preprint
id arxiv_https___arxiv_org_abs_2506_22021
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Decoupling acceleration and wiggling in a laser-produced Betatron source
Gautier, Julien
Andriyash, Igor
Döpp, Andreas
Kozlova, Michaela
Matheron, Aimé
Mahieu, Benoit
Thaury, Cédric
Lahaye, Ronan
Goddet, Jean-Philippe
Tafzi, Amar
Rousseau, Pascal
Sebban, Stéphane
Rousse, Antoine
Phuoc, Kim Ta
Plasma Physics
Betatron radiation is produced in Laser Plasma Accelerators when the electrons are accelerated and simultaneously wiggle across the propagation axis. The mechanisms of electron acceleration and X-ray radiation production follow different scaling laws, and the brightest X-ray radiation is often produced for an electron beam with a lower quality in terms of energy and divergence. Here, we report a laser-driven Betatron X-ray source where the plasma density profile is tailored in order to separate the acceleration and wiggler stages, which allows for the independent optimizations of acceleration and X-ray production. We demonstrate this concept experimentally, and show that the Betatron photon energy can be controlled by adjusting the length of the plasma wiggler. This scheme offers a path to overcome the limitations of conventional Betatron sources, enabling the production of bright, stable, energetic, and collimated X-ray beams.
title Decoupling acceleration and wiggling in a laser-produced Betatron source
topic Plasma Physics
url https://arxiv.org/abs/2506.22021