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Experimental Demonstration of Attosecond Pump-Probe Spectroscopy with an X-ray Free-Electron Laser

Authors :
Guo, Zhaoheng
Driver, Taran
Beauvarlet, Sandra
Cesar, David
Duris, Joseph
Franz, Paris L.
Alexander, Oliver
Bohler, Dorian
Bostedt, Christoph
Averbukh, Vitali
Cheng, Xinxin
DiMauro, Louis F.
Doumy, Gilles
Forbes, Ruaridh
Gessner, Oliver
Glownia, James M.
Isele, Erik
Kamalov, Andrei
Larsen, Kirk A.
Li, Siqi
Li, Xiang
Lin, Ming-Fu
McCracken, Gregory A.
Obaid, Razib
ONeal, Jordan T.
Robles, River R.
Rolles, Daniel
Ruberti, Marco
Rudenko, Artem
Slaughter, Daniel S.
Sudar, Nicholas S.
Thierstein, Emily
Tuthill, Daniel
Ueda, Kiyoshi
Wang, Enliang
Wang, Anna L.
Wang, Jun
Weber, Thorsten
Wolf, Thomas J. A.
Young, Linda
Zhang, Zhen
Bucksbaum, Philip H.
Marangos, Jon P.
Kling, Matthias F.
Huang, Zhirong
Walter, Peter
Inhester, Ludger
Berrah, Nora
Cryan, James P.
Marinelli, Agostino
Publication Year :
2024

Abstract

Pump-probe experiments with sub-femtosecond resolution are the key to understanding electronic dynamics in quantum systems. Here we demonstrate the generation and control of sub-femtosecond pulse pairs from a two-colour X-ray free-electron laser (XFEL). By measuring the delay between the two pulses with an angular streaking diagnostic, we characterise the group velocity of the XFEL and demonstrate control of the pulse delay down to 270 as. We demonstrate the application of this technique to a pump-probe measurement in core-excited para-aminophenol. These results demonstrate the ability to perform pump-probe experiments with sub-femtosecond resolution and atomic site specificity.<br />Comment: 55 pages, main manuscript (5 figures) + supplementary materials (25 figures), 30 figures total. Submitted to Nature Photonics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2401.15250
Document Type :
Working Paper