| Literature DB >> 27828320 |
Thomas Kroll, Jan Kern, Markus Kubin, Daniel Ratner, Sheraz Gul, Franklin D Fuller, Heike Löchel, Jacek Krzywinski, Alberto Lutman, Yuantao Ding, Georgi L Dakovski, Stefan Moeller, Joshua J Turner, Roberto Alonso-Mori, Dennis L Nordlund, Jens Rehanek, Christian Weniger, Alexander Firsov, Maria Brzhezinskaya, Ruchira Chatterjee, Benedikt Lassalle-Kaiser, Raymond G Sierra, Hartawan Laksmono, Ethan Hill, Andrew Borovik, Alexei Erko, Alexander Föhlisch, Rolf Mitzner, Vittal K Yachandra, Junko Yano, Philippe Wernet, Uwe Bergmann.
Abstract
X-ray free electron lasers (XFELs) enable unprecedented new ways to study the electronic structure and dynamics of transition metal systems. L-edge absorption spectroscopy is a powerful technique for such studies and the feasibility of this method at XFELs for solutions and solids has been demonstrated. However, the required x-ray bandwidth is an order of magnitude narrower than that of self-amplified spontaneous emission (SASE), and additional monochromatization is needed. Here we compare L-edge x-ray absorption spectroscopy (XAS) of a prototypical transition metal system based on monochromatizing the SASE radiation of the linac coherent light source (LCLS) with a new technique based on self-seeding of LCLS. We demonstrate how L-edge XAS can be performed using the self-seeding scheme without the need of an additional beam line monochromator. We show how the spectral shape and pulse energy depend on the undulator setup and how this affects the x-ray spectroscopy measurements.Entities:
Year: 2016 PMID: 27828320 PMCID: PMC5234502 DOI: 10.1364/OE.24.022469
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894