Spectral phase measurement of a Fano resonance using tunable attosecond pulses

Resonant absorption of light in atoms can lead to autoionization, whose probability exhibits a Fano intensity profile. Here, the authors use attosecond pulses and weak infrared radiation to study the phase variation of the photoionization amplitude across an autoionization resonance in argon.

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Auteurs principaux: M. Kotur, D. Guénot, Á Jiménez-Galán, D. Kroon, E. W. Larsen, M. Louisy, S. Bengtsson, M. Miranda, J. Mauritsson, C. L. Arnold, S. E. Canton, M. Gisselbrecht, T. Carette, J. M. Dahlström, E. Lindroth, A. Maquet, L. Argenti, F. Martín, A. L’Huillier
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Langue:EN
Publié: Nature Portfolio 2016
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spelling oai:doaj.org-article:8d51742a846f470a9c09373771f44fbe2021-12-02T17:32:20ZSpectral phase measurement of a Fano resonance using tunable attosecond pulses10.1038/ncomms105662041-1723https://doaj.org/article/8d51742a846f470a9c09373771f44fbe2016-02-01T00:00:00Zhttps://doi.org/10.1038/ncomms10566https://doaj.org/toc/2041-1723Resonant absorption of light in atoms can lead to autoionization, whose probability exhibits a Fano intensity profile. Here, the authors use attosecond pulses and weak infrared radiation to study the phase variation of the photoionization amplitude across an autoionization resonance in argon.M. KoturD. GuénotÁ Jiménez-GalánD. KroonE. W. LarsenM. LouisyS. BengtssonM. MirandaJ. MauritssonC. L. ArnoldS. E. CantonM. GisselbrechtT. CaretteJ. M. DahlströmE. LindrothA. MaquetL. ArgentiF. MartínA. L’HuillierNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. Kotur
D. Guénot
Á Jiménez-Galán
D. Kroon
E. W. Larsen
M. Louisy
S. Bengtsson
M. Miranda
J. Mauritsson
C. L. Arnold
S. E. Canton
M. Gisselbrecht
T. Carette
J. M. Dahlström
E. Lindroth
A. Maquet
L. Argenti
F. Martín
A. L’Huillier
Spectral phase measurement of a Fano resonance using tunable attosecond pulses
description Resonant absorption of light in atoms can lead to autoionization, whose probability exhibits a Fano intensity profile. Here, the authors use attosecond pulses and weak infrared radiation to study the phase variation of the photoionization amplitude across an autoionization resonance in argon.
format article
author M. Kotur
D. Guénot
Á Jiménez-Galán
D. Kroon
E. W. Larsen
M. Louisy
S. Bengtsson
M. Miranda
J. Mauritsson
C. L. Arnold
S. E. Canton
M. Gisselbrecht
T. Carette
J. M. Dahlström
E. Lindroth
A. Maquet
L. Argenti
F. Martín
A. L’Huillier
author_facet M. Kotur
D. Guénot
Á Jiménez-Galán
D. Kroon
E. W. Larsen
M. Louisy
S. Bengtsson
M. Miranda
J. Mauritsson
C. L. Arnold
S. E. Canton
M. Gisselbrecht
T. Carette
J. M. Dahlström
E. Lindroth
A. Maquet
L. Argenti
F. Martín
A. L’Huillier
author_sort M. Kotur
title Spectral phase measurement of a Fano resonance using tunable attosecond pulses
title_short Spectral phase measurement of a Fano resonance using tunable attosecond pulses
title_full Spectral phase measurement of a Fano resonance using tunable attosecond pulses
title_fullStr Spectral phase measurement of a Fano resonance using tunable attosecond pulses
title_full_unstemmed Spectral phase measurement of a Fano resonance using tunable attosecond pulses
title_sort spectral phase measurement of a fano resonance using tunable attosecond pulses
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/8d51742a846f470a9c09373771f44fbe
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