Helical Electron Beam Micro-Bunching by High-Order Modes in a Micro-Plasma Waveguide

Fuente: arXiv
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Main Authors: Guo, Xinju, Yi, Longqing
Format: Preprint
Published: 2025
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author Guo, Xinju
Yi, Longqing
author_facet Guo, Xinju
Yi, Longqing
contents Electron acceleration by a high-power Laguerre-Gaussian pulse in a micro-plasma waveguide is investigated. When the incident laser travels in the waveguide, electrons on the wall are extracted into the vacuum core and accelerated by the longitudinal field of the waveguide mode. Using 3D particle-in-cell simulations, we demonstrate that high energy (~100 MeV) electron beams with extremely high charge (~10 nC), ultrashort duration (~30 fs) and small divergence (~1 deg) can be produced by a 100-TW, few-Joule class laser system. In particular, when the drive Laguerre-Gaussian pulse is circularly polarized, it excites high-order waveguide modes that exhibit helical longitudinal electric fields. The 3D profile of this accelerating field is imprinted into the high energy electron beam, leading to helical micro-bunching. This process can be controlled by the spin and orbital angular momentum of the drive pulse. This work paves the way to the generation of highcharge, relativistic electron beams with controlled helicity, which holds great potential for advances in fundamental science and a variety of applications.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15094
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Helical Electron Beam Micro-Bunching by High-Order Modes in a Micro-Plasma Waveguide
Guo, Xinju
Yi, Longqing
Plasma Physics
Electron acceleration by a high-power Laguerre-Gaussian pulse in a micro-plasma waveguide is investigated. When the incident laser travels in the waveguide, electrons on the wall are extracted into the vacuum core and accelerated by the longitudinal field of the waveguide mode. Using 3D particle-in-cell simulations, we demonstrate that high energy (~100 MeV) electron beams with extremely high charge (~10 nC), ultrashort duration (~30 fs) and small divergence (~1 deg) can be produced by a 100-TW, few-Joule class laser system. In particular, when the drive Laguerre-Gaussian pulse is circularly polarized, it excites high-order waveguide modes that exhibit helical longitudinal electric fields. The 3D profile of this accelerating field is imprinted into the high energy electron beam, leading to helical micro-bunching. This process can be controlled by the spin and orbital angular momentum of the drive pulse. This work paves the way to the generation of highcharge, relativistic electron beams with controlled helicity, which holds great potential for advances in fundamental science and a variety of applications.
title Helical Electron Beam Micro-Bunching by High-Order Modes in a Micro-Plasma Waveguide
topic Plasma Physics
url https://arxiv.org/abs/2506.15094