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Chromatic aberrations correction of attosecond high-order harmonic beams by flat-top spatial shaping of the fundamental beam

Authors :
K Veyrinas
M Plach
J Peschel
M Hoflund
F Catoire
C Valentin
P Smorenburg
H Dacasa
S Maclot
C Guo
H Wikmark
A Zaïr
V Strelkov
C Picot
C Arnold
P Eng-Johnsson
A L’Huillier
E Mével
E Constant
Source :
New Journal of Physics, Vol 25, Iss 2, p 023017 (2023)
Publication Year :
2023
Publisher :
IOP Publishing, 2023.

Abstract

Attosecond pulses created by high-order harmonic generation in gases often exhibit strong chromatic aberrations, arising from the broad bandwidth and wavelength-dependent nonlinear light–matter interaction. When the driving laser intensity varies spatially, as for Gaussian driving beams, the apparent source position of the harmonics differs significantly from one order to the next, thus affecting the achievable intensity and duration of the attosecond pulses when they are focused on a target. We show that these chromatic aberrations can be reduced by spatially shaping the fundamental beam to generate high-order harmonics with a driver having a flat-top profile inside the gas medium. By measuring both the intensity profile and wavefront for each harmonic in a plane, we access the extreme ultra-violet (XUV) beam properties and investigate these properties near focus. We observe that controlling chromatic aberrations by flat-top spatial shaping strongly reduces the variation of the XUV spectrum on the beam axis during propagation and, in return, the longitudinal sensitivity of both the temporal profiles and the temporal shifts of the focused attosecond pulses.

Details

Language :
English
ISSN :
13672630
Volume :
25
Issue :
2
Database :
Directory of Open Access Journals
Journal :
New Journal of Physics
Publication Type :
Academic Journal
Accession number :
edsdoj.0e7fa0083f414e079c3d76cdf7d7ebeb
Document Type :
article
Full Text :
https://doi.org/10.1088/1367-2630/acb795