Transverse Recoil Imprinted on Free-Electron Radiation

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Shi, Xihang, Wong, Lee Wei Wesley, Huang, Sunchao, Wong, Liang Jie, Kaminer, Ido
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915452251275264
author Shi, Xihang
Wong, Lee Wei Wesley
Huang, Sunchao
Wong, Liang Jie
Kaminer, Ido
author_facet Shi, Xihang
Wong, Lee Wei Wesley
Huang, Sunchao
Wong, Liang Jie
Kaminer, Ido
contents Phenomena of free-electron X-ray radiation are treated almost exclusively with classical electrodynamics, despite the intrinsic interaction being that of quantum electrodynamics. The lack of quantumness arises from the vast disparity between the electron energy and the much smaller photon energy, resulting in a small cross-section that makes quantum effects negligible. Here we identify a fundamentally distinct phenomenon of electron radiation that bypasses this energy disparity, and thus displays extremely strong quantum features. This phenomenon arises when free-electron transverse scattering occurs during the radiation process, creating entanglement between each transversely recoiled electron and the photons it emitted. This phenomenon profoundly modifies the characteristics of free-electron radiation mediated by crystals, compared to conventional classical analysis and even previous quantum analysis. We also analyze conditions to detect this phenomenon using low-emittance electron beams and high-resolution X-ray spectrometers. These quantum radiation features could guide the development of compact coherent X-ray sources facilitated by nanophotonics and quantum optics.
format Preprint
id arxiv_https___arxiv_org_abs_2312_04383
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Transverse Recoil Imprinted on Free-Electron Radiation
Shi, Xihang
Wong, Lee Wei Wesley
Huang, Sunchao
Wong, Liang Jie
Kaminer, Ido
Optics
Quantum Physics
Phenomena of free-electron X-ray radiation are treated almost exclusively with classical electrodynamics, despite the intrinsic interaction being that of quantum electrodynamics. The lack of quantumness arises from the vast disparity between the electron energy and the much smaller photon energy, resulting in a small cross-section that makes quantum effects negligible. Here we identify a fundamentally distinct phenomenon of electron radiation that bypasses this energy disparity, and thus displays extremely strong quantum features. This phenomenon arises when free-electron transverse scattering occurs during the radiation process, creating entanglement between each transversely recoiled electron and the photons it emitted. This phenomenon profoundly modifies the characteristics of free-electron radiation mediated by crystals, compared to conventional classical analysis and even previous quantum analysis. We also analyze conditions to detect this phenomenon using low-emittance electron beams and high-resolution X-ray spectrometers. These quantum radiation features could guide the development of compact coherent X-ray sources facilitated by nanophotonics and quantum optics.
title Transverse Recoil Imprinted on Free-Electron Radiation
topic Optics
Quantum Physics
url https://arxiv.org/abs/2312.04383