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Experimental demonstration of attosecond pump–probe spectroscopy with an X-ray free-electron laser

  • Zhaoheng Guo,
  • Taran Driver,
  • Sandra Beauvarlet,
  • David Cesar,
  • Joseph Duris,
  • Paris L. Franz,
  • Oliver Alexander,
  • Dorian Bohler,
  • Christoph Bostedt,
  • Vitali Averbukh,
  • Xinxin Cheng,
  • Louis F. DiMauro,
  • Gilles Doumy,
  • Ruaridh Forbes,
  • Oliver Gessner,
  • James M. Glownia,
  • Erik Isele,
  • Andrei Kamalov,
  • Kirk A. Larsen,
  • Siqi Li,
  • Xiang Li,
  • Ming-Fu Lin,
  • Gregory A. McCracken,
  • Razib Obaid,
  • Jordan T. O’Neal,
  • River R. Robles,
  • Daniel Rolles,
  • Marco Ruberti,
  • Artem Rudenko,
  • Daniel S. Slaughter,
  • Nicholas S. Sudar,
  • Emily Thierstein,
  • Daniel Tuthill,
  • Kiyoshi Ueda,
  • Enliang Wang,
  • Anna L. Wang,
  • Jun Wang,
  • Thorsten Weber,
  • Thomas J. A. Wolf,
  • Linda Young,
  • Zhen Zhang,
  • Philip H. Bucksbaum,
  • Jon P. Marangos,
  • Matthias F. Kling,
  • Zhirong Huang,
  • Peter Walter,
  • Ludger Inhester,
  • Nora Berrah,
  • James P. Cryan,
  • Agostino Marinelli

摘要

Pump–probe experiments with subfemtosecond resolution are the key to understanding electronic dynamics in quantum systems. Here we demonstrate the generation and control of subfemtosecond pulse pairs from a two-colour X-ray free-electron laser. By measuring the delay between the two pulses with an angular streaking diagnostic, we characterize the group velocity of the X-ray free-electron laser and show control of the pulse delay down to 270 as. We confirm the application of this technique to a pump–probe measurement in core-ionized para-aminophenol. These results reveal the ability to perform pump–probe experiments with subfemtosecond resolution and atomic site specificity.