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Terawatt-scale attosecond X-ray pulses from a cascaded superradiant free-electron laser

  • Paris Franz,
  • Siqi Li,
  • Taran Driver,
  • River R. Robles,
  • David Cesar,
  • Erik Isele,
  • Zhaoheng Guo,
  • Jun Wang,
  • Joseph P. Duris,
  • Kirk Larsen,
  • James M. Glownia,
  • Xinxin Cheng,
  • Matthias C. Hoffmann,
  • Xiang Li,
  • Ming-Fu Lin,
  • Andrei Kamalov,
  • Razib Obaid,
  • Adam Summers,
  • Nick Sudar,
  • Emily Thierstein,
  • Zhen Zhang,
  • Matthias F. Kling,
  • Zhirong Huang,
  • James P. Cryan,
  • Agostino Marinelli

摘要

Intense attosecond X-ray pulses are key for ultrafast nonlinear spectroscopy and diffractive imaging. Here we demonstrate the generation of terawatt-scale isolated attosecond pulses with a two-stage cascaded X-ray free-electron laser. These pulses have a median energy in excess of 100 μJ in the soft X-ray region. The temporal profile is characterized with an angular streaking measurement, revealing a maximum peak power of 1.1 TW. Our data show an increase in the average peak power of attosecond X-ray pulses by one order of magnitude over previous reported results and provide strong evidence of soliton-like superradiant behaviour in the X-ray regime.