| Literature DB >> 22781760 |
Simon Rutishauser1, Liubov Samoylova, Jacek Krzywinski, Oliver Bunk, Jan Grünert, Harald Sinn, Marco Cammarata, David M Fritz, Christian David.
Abstract
The high photon flux and femtosecond pulse duration of hard X-ray free-electron lasers have spurred a large variety of novel and fascinating experiments in physical, chemical and biological sciences. Many of these experiments depend fundamentally on a clean, well-defined wavefront. Here we explore the wavefront properties of hard X-ray free-electron laser radiation by means of a grating interferometer, from which we obtain shot-to-shot wavefront information with an excellent angular sensitivity on the order of ten nanoradian. The wavefront distortions introduced by optical elements are observed in-situ and under operational conditions. The source-point position and fluctuations are measured with unprecedented accuracy in longitudinal and lateral direction, both during nominal operation and as the X-ray free-electron laser is driven into saturation.Year: 2012 PMID: 22781760 DOI: 10.1038/ncomms1950
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919