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Full spatial characterization of a nanofocused x-ray free-electron laser beam by ptychographic imaging

Schropp, Andreas (author)
Hoppe, Robert (author)
Meier, Vivienne (author)
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Patommel, Jens (author)
Seiboth, Frank (author)
Lee, Hae Ja (author)
Nagler, Bob (author)
Galtier, Eric C. (author)
Arnold, Brice (author)
Zastrau, Ulf (author)
Hastings, Jerome B. (author)
Nilsson, Daniel (author)
KTH,Biomedicinsk fysik och röntgenfysik
Uhlén, Fredrik (author)
KTH,Biomedicinsk fysik och röntgenfysik
Vogt, Ulrich (author)
KTH,Biomedicinsk fysik och röntgenfysik
Hertz, Hans M. (author)
KTH,Biomedicinsk fysik och röntgenfysik
Schroer, Christian G. (author)
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 (creator_code:org_t)
2013-04-09
2013
English.
In: Scientific Reports. - : Springer Science and Business Media LLC. - 2045-2322. ; 3, s. 1633-
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The emergence of hard X-ray free electron lasers (XFELs) enables new insights into many fields of science. These new sources provide short, highly intense, and coherent X-ray pulses. In a variety of scientific applications these pulses need to be strongly focused. In this article, we demonstrate focusing of hard X-ray FEL pulses to 125 nmusing refractive x-ray optics. For a quantitative analysis of most experiments, the wave field or at least the intensity distribution illuminating the sample is needed. We report on the full characterization of a nanofocused XFEL beam by ptychographic imaging, giving access to the complex wave field in the nanofocus. From these data, we obtain the full caustic of the beam, identify the aberrations of the optic, and determine the wave field for individual pulses. This information is for example crucial for high-resolution imaging, creating matter in extreme conditions, and nonlinear x-ray optics.

Keyword

Serial Femtosecond Crystallography
Parabolic Refractive Lenses
Diffraction Microscopy
Optics
Pulses

Publication and Content Type

ref (subject category)
art (subject category)

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