Nonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses

Ultrafast dynamics following light-matter interaction are governed by nonlinear processes. Here the authors show that initial nonlinear signal time-evolution is a consequence of phase grating accumulation using transient grating measurements with attosecond and near-infrared pulses.

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Autores principales: Ashley P. Fidler, Seth J. Camp, Erika R. Warrick, Etienne Bloch, Hugo J. B. Marroux, Daniel M. Neumark, Kenneth J. Schafer, Mette B. Gaarde, Stephen R. Leone
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/1cbad5783a974b988a52955e214d70aa
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spelling oai:doaj.org-article:1cbad5783a974b988a52955e214d70aa2021-12-02T15:35:37ZNonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses10.1038/s41467-019-09317-42041-1723https://doaj.org/article/1cbad5783a974b988a52955e214d70aa2019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09317-4https://doaj.org/toc/2041-1723Ultrafast dynamics following light-matter interaction are governed by nonlinear processes. Here the authors show that initial nonlinear signal time-evolution is a consequence of phase grating accumulation using transient grating measurements with attosecond and near-infrared pulses.Ashley P. FidlerSeth J. CampErika R. WarrickEtienne BlochHugo J. B. MarrouxDaniel M. NeumarkKenneth J. SchaferMette B. GaardeStephen R. LeoneNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ashley P. Fidler
Seth J. Camp
Erika R. Warrick
Etienne Bloch
Hugo J. B. Marroux
Daniel M. Neumark
Kenneth J. Schafer
Mette B. Gaarde
Stephen R. Leone
Nonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses
description Ultrafast dynamics following light-matter interaction are governed by nonlinear processes. Here the authors show that initial nonlinear signal time-evolution is a consequence of phase grating accumulation using transient grating measurements with attosecond and near-infrared pulses.
format article
author Ashley P. Fidler
Seth J. Camp
Erika R. Warrick
Etienne Bloch
Hugo J. B. Marroux
Daniel M. Neumark
Kenneth J. Schafer
Mette B. Gaarde
Stephen R. Leone
author_facet Ashley P. Fidler
Seth J. Camp
Erika R. Warrick
Etienne Bloch
Hugo J. B. Marroux
Daniel M. Neumark
Kenneth J. Schafer
Mette B. Gaarde
Stephen R. Leone
author_sort Ashley P. Fidler
title Nonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses
title_short Nonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses
title_full Nonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses
title_fullStr Nonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses
title_full_unstemmed Nonlinear XUV signal generation probed by transient grating spectroscopy with attosecond pulses
title_sort nonlinear xuv signal generation probed by transient grating spectroscopy with attosecond pulses
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/1cbad5783a974b988a52955e214d70aa
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AT erikarwarrick nonlinearxuvsignalgenerationprobedbytransientgratingspectroscopywithattosecondpulses
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