4.8 Article

Coherence Properties of Individual Femtosecond Pulses of an X-Ray Free-Electron Laser

期刊

PHYSICAL REVIEW LETTERS
卷 107, 期 14, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.107.144801

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资金

  1. LCLS
  2. Stanford University through the Stanford Institute for Materials Energy Sciences (SIMES)
  3. Lawrence Berkeley National Laboratory (LBNL)
  4. University of Hamburg through the BMBF [FSP 301]
  5. Center for Free Electron Laser Science (CFEL)
  6. BMBF [05K10CHG]
  7. U. S. Department of Energy, Office of Science, Office of Basic Energy Sciences [DE-AC02-06CH11357]
  8. U. S. Department of Energy by Lawrence Livermore National Laboratory [DE-AC52-07NA27344]
  9. CNRS

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Measurements of the spatial and temporal coherence of single, femtosecond x-ray pulses generated by the first hard x-ray free-electron laser, the Linac Coherent Light Source, are presented. Single-shot measurements were performed at 780 eV x-ray photon energy using apertures containing double pinholes in diffract-and-destroy mode. We determined a coherence length of 17 mu m in the vertical direction, which is approximately the size of the focused Linac Coherent Light Source beam in the same direction. The analysis of the diffraction patterns produced by the pinholes with the largest separation yields an estimate of the temporal coherence time of 0.55 fs. We find that the total degree of transverse coherence is 56% and that the x-ray pulses are adequately described by two transverse coherent modes in each direction. This leads us to the conclusion that 78% of the total power is contained in the dominant mode.

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