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Novel experimental setup for megahertz X-ray diffraction in a diamond anvil cell at the High Energy Density (HED) instrument of the European X-ray Free-Electron Laser (EuXFEL)
Liermann, H. P. (Corresponding author)DESY* ; Konôpková, Z.XFEL.EU* ; Appel, K.XFEL.EU* ; Prescher, C.Extern*XFEL.EU*DESY* ; Schropp, A.DESY* ; Cerantola, V.Extern*XFEL.EU* ; Husband, R. J.Extern*DESY* ; McHardy, J. D.Extern* ; McMahon, M. I.Extern* ; McWilliams, R. S. (Corresponding author)Extern* ; Pépin, C. M.Extern*XFEL.EU* ; Mainberger, J.DESY* ; Roeper, M.DESY* ; Berghäuser, A.Extern*XFEL.EU* ; Damker, H.-G.DESY* ; Talkovski, P.DESY* ; Foese, M.DESY* ; Kujala, N.XFEL.EU* ; Ball, O. B.Extern* ; Baron, M. A.Extern* ; Briggs, R.Extern* ; Bykov, M.Extern* ; Bykova, E.Extern* ; Chantel, J.Extern* ; Coleman, A. L.Extern*XFEL.EU* ; Cynn, H.Extern* ; Dattelbaum, D.Extern* ; Dresselhaus-Marais, L. E. ; Eggert, J.Extern*XFEL.EU* ; Ehm, L.Extern* ; Evans, W. J.Extern* ; Fiquet, G.Extern* ; Frost, M.Extern* ; Glazyrin, K.DESY* ; Goncharov, A. F.Extern* ; Hwang, H. ; Jenei, Z.Extern* ; Kim, J.-Y.Extern* ; Langenhorst, F.Extern* ; Lee, Y.Extern* ; Makita, M.XFEL.EU* ; Marquardt, H.Extern* ; McBride, E. E.Extern* ; Merkel, S.Extern* ; Morard, G.Extern* ; O'Bannon, E.Extern* ; Otzen, C.Extern*DESY* ; Pace, E. J.Extern* ; Pelka, A.XFEL.EU* ; Pigott, J. S.Extern*XFEL.EU* ; Prakapenka, V.Extern* ; Redmer, R.Extern* ; Sanchez-Valle, C.Extern* ; Schoelmerich, M.XFEL.EU* ; Speziale, S.Extern* ; Spiekermann, G.Extern* ; Sturtevant, B. T.Extern* ; Toleikis, S.DESY* ; Velisavljevic, N.Extern* ; Wilke, M.Extern* ; Yoo, C.-S.Extern* ; Baehtz, C.XFEL.EU* ; Zastrau, U.XFEL.EU* ; Strohm, C.DESY*
2021
Wiley-Blackwell
[S.l.]
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Please use a persistent id in citations: doi:10.1107/S1600577521002551 doi:10.3204/PUBDB-2021-02048
Abstract: The high-precision X-ray diffraction setup for work with diamond anvil cells (DACs) in interaction chamber 2 (IC2) of the High Energy Density instrument of the European X-ray Free-Electron Laser is described. This includes beamline optics, sample positioning and detector systems located in the multipurpose vacuum chamber. Concepts for pump–probe X-ray diffraction experiments in the DAC are described and their implementation demonstrated during the First User Community Assisted Commissioning experiment. X-ray heating and diffraction of Bi under pressure, obtained using 20 fs X-ray pulses at 17.8 keV and 2.2 MHz repetition, is illustrated through splitting of diffraction peaks, and interpreted employing finite element modeling of the sample chamber in the DAC.
Contributing Institute(s):
- Experimentebetreuung PETRA III (FS-PET-D)
- DOOR-User (DOOR ; HAS-User)
- FS-PETRA (FS-PETRA)
- FS-Photon Science (FS-PS)
- Konstruktion (ZM1)
Research Program(s):
- 631 - Matter – Dynamics, Mechanisms and Control (POF4-631) (POF4-631)
- 6G3 - PETRA III (DESY) (POF4-6G3) (POF4-6G3)
- DEEP-MAPS - Deep Earth Mantle Phase Transition Maps: Studied by Time-Resolved Experiments (864877) (864877)
- CALIPSOplus - Convenient Access to Light Sources Open to Innovation, Science and to the World (730872) (730872)
Experiment(s):
- PETRA Beamline P02.2 (PETRA III)
Appears in the scientific report
2021
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