Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transition

We suggest a new method of attosecond pulse train measurement based on two-photon Raman-type resonant interaction of the XUV with an atom (Attosecond pulse reconstruction using Raman-type Transitions, ART). We show analytically and numerically that the attosecond pulse auto-correlation function and...

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Main Authors: V V Strelkov, V A Birulia, A I Magunov
Format: Article
Language:English
Published: IOP Publishing 2018-01-01
Series:New Journal of Physics
Subjects:
Online Access:https://doi.org/10.1088/1367-2630/aae101
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author V V Strelkov
V A Birulia
A I Magunov
author_facet V V Strelkov
V A Birulia
A I Magunov
author_sort V V Strelkov
collection DOAJ
description We suggest a new method of attosecond pulse train measurement based on two-photon Raman-type resonant interaction of the XUV with an atom (Attosecond pulse reconstruction using Raman-type Transitions, ART). We show analytically and numerically that the attosecond pulse auto-correlation function and chirp can be measured using this process. Its resonant nature allows obtaining reasonable signal even for relatively low XUV intensity. The interpretation of the results is remarkably simple for the XUV generated by bi-circular field. The experimental realization of the method can be based either on measuring the excitation of the gas or on four-wave mixing fully optical scheme.
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spelling doaj.art-399281eeeb98433b8cdf1924117269bb2023-08-08T14:53:55ZengIOP PublishingNew Journal of Physics1367-26302018-01-0120909302510.1088/1367-2630/aae101Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transitionV V Strelkov0V A Birulia1A I Magunov2Prokhorov General Physics Institute of the Russian Academy of Sciences, 119991 Moscow, Russia; Moscow Institute of Physics and Technology (State University) , Dolgoprudny, 141700 Moscow Region, RussiaProkhorov General Physics Institute of the Russian Academy of Sciences, 119991 Moscow, Russia; Moscow Institute of Physics and Technology (State University) , Dolgoprudny, 141700 Moscow Region, RussiaProkhorov General Physics Institute of the Russian Academy of Sciences, 119991 Moscow, Russia; National Research Institute for Physical-Technical and Radiotechnical Measurements, Mendeleevo, 141570 Moscow Region, RussiaWe suggest a new method of attosecond pulse train measurement based on two-photon Raman-type resonant interaction of the XUV with an atom (Attosecond pulse reconstruction using Raman-type Transitions, ART). We show analytically and numerically that the attosecond pulse auto-correlation function and chirp can be measured using this process. Its resonant nature allows obtaining reasonable signal even for relatively low XUV intensity. The interpretation of the results is remarkably simple for the XUV generated by bi-circular field. The experimental realization of the method can be based either on measuring the excitation of the gas or on four-wave mixing fully optical scheme.https://doi.org/10.1088/1367-2630/aae101XUV attosecond pulsesattosecond metrologyRaman-type transitionnumerical solution of the Schrödinger equationinteraction of an atom with UV field
spellingShingle V V Strelkov
V A Birulia
A I Magunov
Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transition
New Journal of Physics
XUV attosecond pulses
attosecond metrology
Raman-type transition
numerical solution of the Schrödinger equation
interaction of an atom with UV field
title Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transition
title_full Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transition
title_fullStr Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transition
title_full_unstemmed Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transition
title_short Method of XUV attosecond pulse characterization using two-photon resonant Raman-type transition
title_sort method of xuv attosecond pulse characterization using two photon resonant raman type transition
topic XUV attosecond pulses
attosecond metrology
Raman-type transition
numerical solution of the Schrödinger equation
interaction of an atom with UV field
url https://doi.org/10.1088/1367-2630/aae101
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AT aimagunov methodofxuvattosecondpulsecharacterizationusingtwophotonresonantramantypetransition