First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation

Abstract Plasma and beam physics are usually considered as classical physics disciplines with quantum effects featuring only rarely. In particular, free electron lasers (FELs) even in the Angstrom regime (developed recently and being upgraded towards even shorter wavelengths) are well described by c...

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Main Authors: Sergey Tomin, Evgeny Schneidmiller, Winfried Decking
Format: Article
Language:English
Published: Nature Portfolio 2023-01-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-023-28813-8
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author Sergey Tomin
Evgeny Schneidmiller
Winfried Decking
author_facet Sergey Tomin
Evgeny Schneidmiller
Winfried Decking
author_sort Sergey Tomin
collection DOAJ
description Abstract Plasma and beam physics are usually considered as classical physics disciplines with quantum effects featuring only rarely. In particular, free electron lasers (FELs) even in the Angstrom regime (developed recently and being upgraded towards even shorter wavelengths) are well described by classical mechanics and electrodynamics. There is, however, a quantum effect that can influence the operation of these devices and limit the shortest achievable wavelength, namely energy diffusion in an electron beam due to quantum fluctuations in undulator radiation. Although this effect has been calculated theoretically, it has never been measured. In this paper we present measurements of quantum diffusion effect at the European X-Ray Free-Electron Laser. The method uses a recently installed wakefield structure, which enables measurements of the longitudinal phase space after the hard X-ray undulator. The effect of quantum diffusion in the undulator is measured for the first time, and the results are in good agreement with theoretical predictions.
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spelling doaj.art-fed25067ebc24911b8a637754627e4a02023-01-29T12:11:30ZengNature PortfolioScientific Reports2045-23222023-01-011311710.1038/s41598-023-28813-8First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiationSergey Tomin0Evgeny Schneidmiller1Winfried Decking2Deutsches Elektronen-Synchrotron DESYDeutsches Elektronen-Synchrotron DESYDeutsches Elektronen-Synchrotron DESYAbstract Plasma and beam physics are usually considered as classical physics disciplines with quantum effects featuring only rarely. In particular, free electron lasers (FELs) even in the Angstrom regime (developed recently and being upgraded towards even shorter wavelengths) are well described by classical mechanics and electrodynamics. There is, however, a quantum effect that can influence the operation of these devices and limit the shortest achievable wavelength, namely energy diffusion in an electron beam due to quantum fluctuations in undulator radiation. Although this effect has been calculated theoretically, it has never been measured. In this paper we present measurements of quantum diffusion effect at the European X-Ray Free-Electron Laser. The method uses a recently installed wakefield structure, which enables measurements of the longitudinal phase space after the hard X-ray undulator. The effect of quantum diffusion in the undulator is measured for the first time, and the results are in good agreement with theoretical predictions.https://doi.org/10.1038/s41598-023-28813-8
spellingShingle Sergey Tomin
Evgeny Schneidmiller
Winfried Decking
First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation
Scientific Reports
title First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation
title_full First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation
title_fullStr First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation
title_full_unstemmed First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation
title_short First measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation
title_sort first measurement of energy diffusion in an electron beam due to quantum fluctuations in the undulator radiation
url https://doi.org/10.1038/s41598-023-28813-8
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