Relativistic quantum mechanics of charged vortex particles accelerated in a uniform electric field

Fuente: arXiv
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Hauptverfasser: Meng, Qi, Huang, Ziqiang, Liu, Xuan, Ma, Wei, Yang, Zhen, Lu, Liang, Silenko, Alexander J., Zhang, Pengming, Zou, Liping
Format: Preprint
Veröffentlicht: 2025
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author Meng, Qi
Huang, Ziqiang
Liu, Xuan
Ma, Wei
Yang, Zhen
Lu, Liang
Silenko, Alexander J.
Zhang, Pengming
Zou, Liping
author_facet Meng, Qi
Huang, Ziqiang
Liu, Xuan
Ma, Wei
Yang, Zhen
Lu, Liang
Silenko, Alexander J.
Zhang, Pengming
Zou, Liping
contents The relativistic quantum-mechanical description of a charged Laguerre-Gauss beam accelerated in a uniform electric field has been fulfilled. Stationary wave eigenfunctions are rigorously derived. The evolution of the beam parameters during acceleration is considered in detail. The practically important effect of extraordinary suppression of transverse spreading of the beam is discovered, carefully analyzed, and properly explained. Our results provide direct evidence that vortex particle beams can be accelerated without destroying their intrinsic vortex properties, paving the way for high-energy vortex beam applications.
format Preprint
id arxiv_https___arxiv_org_abs_2506_18492
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Relativistic quantum mechanics of charged vortex particles accelerated in a uniform electric field
Meng, Qi
Huang, Ziqiang
Liu, Xuan
Ma, Wei
Yang, Zhen
Lu, Liang
Silenko, Alexander J.
Zhang, Pengming
Zou, Liping
Accelerator Physics
The relativistic quantum-mechanical description of a charged Laguerre-Gauss beam accelerated in a uniform electric field has been fulfilled. Stationary wave eigenfunctions are rigorously derived. The evolution of the beam parameters during acceleration is considered in detail. The practically important effect of extraordinary suppression of transverse spreading of the beam is discovered, carefully analyzed, and properly explained. Our results provide direct evidence that vortex particle beams can be accelerated without destroying their intrinsic vortex properties, paving the way for high-energy vortex beam applications.
title Relativistic quantum mechanics of charged vortex particles accelerated in a uniform electric field
topic Accelerator Physics
url https://arxiv.org/abs/2506.18492