Spin-Orbit Structure and Helicity Anomaly in Relativistic Electron Vortex Beams

Fuente: arXiv
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Main Authors: Guo, Zhongze, Xu, Bei, Gu, Qiang
Format: Preprint
Published: 2025
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author Guo, Zhongze
Xu, Bei
Gu, Qiang
author_facet Guo, Zhongze
Xu, Bei
Gu, Qiang
contents The relativistic electron vortex beam (REVB) has attracted increasing attention due to its nontrivial spin-orbit structure recently. As relativistic electrons are governed by the Dirac equation, exact solutions to this equation provide the most reliable starting point for understanding angular momentum characteristics of REVBs. In this work, a set of exact eigensolutions of the Dirac equation are derived in a complex cylindrical coordinate system using a generalized series expansion method. We demonstrate that the eigenstate carries net angular momentum with the vortex charge being the quantum number of the total angular momentum along the propagation direction and deduce the explicit expression for the intrinsic spin-orbit coupling strength. Furthermore, we show that helicity, which exhibits anomaly in the vortex state, can serve as a practical characterizing quantity for the REVB. This work lays a theoretical foundation for further exploration of REVBs in both theory and experiment.
format Preprint
id arxiv_https___arxiv_org_abs_2507_08493
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spin-Orbit Structure and Helicity Anomaly in Relativistic Electron Vortex Beams
Guo, Zhongze
Xu, Bei
Gu, Qiang
Quantum Physics
Other Condensed Matter
Accelerator Physics
Atomic Physics
Optics
The relativistic electron vortex beam (REVB) has attracted increasing attention due to its nontrivial spin-orbit structure recently. As relativistic electrons are governed by the Dirac equation, exact solutions to this equation provide the most reliable starting point for understanding angular momentum characteristics of REVBs. In this work, a set of exact eigensolutions of the Dirac equation are derived in a complex cylindrical coordinate system using a generalized series expansion method. We demonstrate that the eigenstate carries net angular momentum with the vortex charge being the quantum number of the total angular momentum along the propagation direction and deduce the explicit expression for the intrinsic spin-orbit coupling strength. Furthermore, we show that helicity, which exhibits anomaly in the vortex state, can serve as a practical characterizing quantity for the REVB. This work lays a theoretical foundation for further exploration of REVBs in both theory and experiment.
title Spin-Orbit Structure and Helicity Anomaly in Relativistic Electron Vortex Beams
topic Quantum Physics
Other Condensed Matter
Accelerator Physics
Atomic Physics
Optics
url https://arxiv.org/abs/2507.08493