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|a 10.1107/S1600577523003910
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|a pubmed24n1541.xml
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|a (NLM)37318367
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|a eng
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|a Husband, Rachel J
|e verfasserin
|4 aut
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|a A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell
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|c 2023
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|a Text
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|a ƒaComputermedien
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|2 rdamedia
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|a ƒa Online-Ressource
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|a Date Completed 10.07.2023
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|a Date Revised 21.09.2024
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|a published: Print-Electronic
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|a Citation Status PubMed-not-MEDLINE
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|a open access.
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|a An experimental platform for dynamic diamond anvil cell (dDAC) research has been developed at the High Energy Density (HED) Instrument at the European X-ray Free Electron Laser (European XFEL). Advantage was taken of the high repetition rate of the European XFEL (up to 4.5 MHz) to collect pulse-resolved MHz X-ray diffraction data from samples as they are dynamically compressed at intermediate strain rates (≤103 s-1), where up to 352 diffraction images can be collected from a single pulse train. The set-up employs piezo-driven dDACs capable of compressing samples in ≥340 µs, compatible with the maximum length of the pulse train (550 µs). Results from rapid compression experiments on a wide range of sample systems with different X-ray scattering powers are presented. A maximum compression rate of 87 TPa s-1 was observed during the fast compression of Au, while a strain rate of ∼1100 s-1 was achieved during the rapid compression of N2 at 23 TPa s-1
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|a Journal Article
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|a X-ray free-electron lasers
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|a diamond anvil cells
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|a dynamic compression
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|a extreme conditions science
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|a Diamond
|2 NLM
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|a 7782-40-3
|2 NLM
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|a Strohm, Cornelius
|e verfasserin
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|a Appel, Karen
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|a Ball, Orianna B
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|a Briggs, Richard
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|a Buchen, Johannes
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|a Cerantola, Valerio
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|a Chariton, Stella
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|a Coleman, Amy L
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|a Cynn, Hyunchae
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|a Dattelbaum, Dana
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|a Dwivedi, Anand
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|a Eggert, Jon H
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|a Ehm, Lars
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|a Evans, William J
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|a Glazyrin, Konstantin
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|a Goncharov, Alexander F
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|a Graafsma, Heinz
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|a Howard, Alex
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|a Huston, Larissa
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|a Hutchinson, Trevor M
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|a Hwang, Huijeong
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|a Jacob, Sony
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|a Kaa, Johannes
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|a Kim, Jaeyong
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|a Kim, Minseob
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|a Koemets, Egor
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|a Konôpková, Zuzana
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|a Langenhorst, Falko
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|a Laurus, Torsten
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|a Li, Xinyang
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|a Mainberger, Jona
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|a Marquardt, Hauke
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|a McBride, Emma E
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|a McGuire, Christopher
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|a McHardy, James D
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|a McMahon, Malcolm I
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|a McWilliams, R Stewart
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|a Méndez, Alba S J
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|a Mondal, Anshuman
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|a Morard, Guillaume
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|a O'Bannon, Earl F
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|a Otzen, Christoph
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|a Pépin, Charles M
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|a Prakapenka, Vitali B
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|a Prescher, Clemens
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|a Preston, Thomas R
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|a Redmer, Ronald
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|a Roeper, Michael
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|a Sanchez-Valle, Carmen
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|a Smith, Dean
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|a Smith, Raymond F
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|a Sneed, Daniel
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|a Speziale, Sergio
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|a Spitzbart, Tobias
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|a Stern, Stephan
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|a Sturtevant, Blake T
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|a Sztuk-Dambietz, Jolanta
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|a Talkovski, Peter
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|a Velisavljevic, Nenad
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|a Vennari, Cara
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|a Wu, Zhongyan
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|a Yoo, Choong Shik
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|a Zastrau, Ulf
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|a Jenei, Zsolt
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|a Liermann, Hanns Peter
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|i Enthalten in
|t Journal of synchrotron radiation
|d 1994
|g 30(2023), Pt 4 vom: 01. Juli, Seite 671-685
|w (DE-627)NLM09824129X
|x 1600-5775
|7 nnns
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|g volume:30
|g year:2023
|g number:Pt 4
|g day:01
|g month:07
|g pages:671-685
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|u http://dx.doi.org/10.1107/S1600577523003910
|3 Volltext
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|a AR
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|d 30
|j 2023
|e Pt 4
|b 01
|c 07
|h 671-685
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