Polarization and CEP dependence of the transverse phase space in laser driven accelerators

We present experimental results which show a laser polarization-dependent contribution to electron beam pointing jitter in laser wakefield accelerators (LWFAs). We develop a theoretical model for the polarization dependence in terms of the transverse dynamics of trapped electrons, resonantly driven...

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Main Authors: A. Seidel, B. Lei, C. Zepter, M. C. Kaluza, A. Sävert, M. Zepf, D. Seipt
Format: Article
Language:English
Published: American Physical Society 2024-01-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.6.013056
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author A. Seidel
B. Lei
C. Zepter
M. C. Kaluza
A. Sävert
M. Zepf
D. Seipt
author_facet A. Seidel
B. Lei
C. Zepter
M. C. Kaluza
A. Sävert
M. Zepf
D. Seipt
author_sort A. Seidel
collection DOAJ
description We present experimental results which show a laser polarization-dependent contribution to electron beam pointing jitter in laser wakefield accelerators (LWFAs). We develop a theoretical model for the polarization dependence in terms of the transverse dynamics of trapped electrons, resonantly driven by bubble centroid oscillations. The latter are generated by the carrier wave phase evolution at the self-steepened laser pulse front. In the model, the polarization-dependent jitter originates from shot-to-shot fluctuations of the laser carrier envelope phase (CEP). The model is verified by particle-in-cell simulations and suggests that CEP stabilization of the driving lasers might be necessary to achieve ultimate electron pointing stability in LWFAs.
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spelling doaj.art-b66e0ecff9cb4f10970c018258f9a8962024-04-12T17:38:07ZengAmerican Physical SocietyPhysical Review Research2643-15642024-01-016101305610.1103/PhysRevResearch.6.013056Polarization and CEP dependence of the transverse phase space in laser driven acceleratorsA. SeidelB. LeiC. ZepterM. C. KaluzaA. SävertM. ZepfD. SeiptWe present experimental results which show a laser polarization-dependent contribution to electron beam pointing jitter in laser wakefield accelerators (LWFAs). We develop a theoretical model for the polarization dependence in terms of the transverse dynamics of trapped electrons, resonantly driven by bubble centroid oscillations. The latter are generated by the carrier wave phase evolution at the self-steepened laser pulse front. In the model, the polarization-dependent jitter originates from shot-to-shot fluctuations of the laser carrier envelope phase (CEP). The model is verified by particle-in-cell simulations and suggests that CEP stabilization of the driving lasers might be necessary to achieve ultimate electron pointing stability in LWFAs.http://doi.org/10.1103/PhysRevResearch.6.013056
spellingShingle A. Seidel
B. Lei
C. Zepter
M. C. Kaluza
A. Sävert
M. Zepf
D. Seipt
Polarization and CEP dependence of the transverse phase space in laser driven accelerators
Physical Review Research
title Polarization and CEP dependence of the transverse phase space in laser driven accelerators
title_full Polarization and CEP dependence of the transverse phase space in laser driven accelerators
title_fullStr Polarization and CEP dependence of the transverse phase space in laser driven accelerators
title_full_unstemmed Polarization and CEP dependence of the transverse phase space in laser driven accelerators
title_short Polarization and CEP dependence of the transverse phase space in laser driven accelerators
title_sort polarization and cep dependence of the transverse phase space in laser driven accelerators
url http://doi.org/10.1103/PhysRevResearch.6.013056
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