Ultrafast electron vortex produced by a grating made of light
Abstract
The generation of vortex matter waves carrying quantized orbital angular momentum is challenging and relies heavily on the material nanofabrication methods due to their extremely small de-Broglie wavelengths. Here, we introduce an all-optical method for generating an electron vortex by diffraction through a grating made of light. We realize the orbital angular momentum transfer between free electrons and photons by stimulated Compton scattering. The transferred angular momentum quantum number can be freely tuned. The method can be generalized to a broad range of charged particles, neutral atoms, and molecules of diverse masses. Our results open up novel opportunities for applications in free electron lasers and ultrafast electron microscopy by utilizing the orbital angular momentum degree of freedom of free electrons.
Cite
@article{arxiv.2604.25546,
title = {Ultrafast electron vortex produced by a grating made of light},
author = {Zichen Li and Hao Liang and Yuan Gu and Jiaye Zhang and Aofan Lin and Juan Du and Sina Jacob and Maksim Kunitski and Till Jahnke and Sebastian Eckart and Reinhard Dörner and Kang Lin},
journal= {arXiv preprint arXiv:2604.25546},
year = {2026}
}