Imaging x-ray spectrometer at the high energy density instrument of the European x-ray free electron laser

Author:

Pan X.12ORCID,Šmíd M.1,Štefaníková R.12,Donat F.1,Baehtz C.1,Burian T.3,Cerantola V.4ORCID,Gaus L.1ORCID,Humphries O. S.4ORCID,Hajkova V.3,Juha L.3,Krupka M.3ORCID,Kozlová M.13ORCID,Konopkova Z.4,Preston T. R.4ORCID,Wollenweber L.4ORCID,Zastrau U.4ORCID,Falk K.123ORCID

Affiliation:

1. Helmholtz-Zentrum Dresden-Rossendorf 1 , 01328 Dresden, Germany

2. Technische Universität Dresden 2 , 01069 Dresden, Germany

3. Institute of Physics of the ASCR 3 , 18221 Prague, Czech Republic

4. European XFEL 4 , Holzkoppel 4, 22869 Schenefeld, Germany

Abstract

A multipurpose imaging x-ray crystal spectrometer is developed for the high energy density instrument of the European X-ray Free Electron Laser. The spectrometer is designed to measure x rays in the energy range of 4–10 keV, providing high-resolution, spatially resolved spectral measurements. A toroidally bent germanium (Ge) crystal is used, allowing x-ray diffraction from the crystal to image along a one-dimensional spatial profile while spectrally resolving along the other. A detailed geometrical analysis is performed to determine the curvature of the crystal. The theoretical performance of the spectrometer in various configurations is calculated by ray-tracing simulations. The key properties of the spectrometer, including the spectral and spatial resolution, are demonstrated experimentally on different platforms. Experimental results prove that this Ge spectrometer is a powerful tool for spatially resolved measurements of x-ray emission, scattering, or absorption spectra in high energy density physics.

Funder

Helmholtz Association

Publisher

AIP Publishing

Subject

Instrumentation

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