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A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell
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-reso...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
International Union of Crystallography
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10325015/ https://www.ncbi.nlm.nih.gov/pubmed/37318367 http://dx.doi.org/10.1107/S1600577523003910 |
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author | Husband, Rachel J. Strohm, Cornelius Appel, Karen Ball, Orianna B. Briggs, Richard Buchen, Johannes Cerantola, Valerio Chariton, Stella Coleman, Amy L. Cynn, Hyunchae Dattelbaum, Dana Dwivedi, Anand Eggert, Jon H. Ehm, Lars Evans, William J. Glazyrin, Konstantin Goncharov, Alexander F. Graafsma, Heinz Howard, Alex Huston, Larissa Hutchinson, Trevor M. Hwang, Huijeong Jacob, Sony Kaa, Johannes Kim, Jaeyong Kim, Minseob Koemets, Egor Konôpková, Zuzana Langenhorst, Falko Laurus, Torsten Li, Xinyang Mainberger, Jona Marquardt, Hauke McBride, Emma E. McGuire, Christopher McHardy, James D. McMahon, Malcolm I. McWilliams, R. Stewart Méndez, Alba S. J. Mondal, Anshuman Morard, Guillaume O’Bannon, Earl F. Otzen, Christoph Pépin, Charles M. Prakapenka, Vitali B. Prescher, Clemens Preston, Thomas R. Redmer, Ronald Roeper, Michael Sanchez-Valle, Carmen Smith, Dean Smith, Raymond F. Sneed, Daniel Speziale, Sergio Spitzbart, Tobias Stern, Stephan Sturtevant, Blake T. Sztuk-Dambietz, Jolanta Talkovski, Peter Velisavljevic, Nenad Vennari, Cara Wu, Zhongyan Yoo, Choong-Shik Zastrau, Ulf Jenei, Zsolt Liermann, Hanns-Peter |
author_facet | Husband, Rachel J. Strohm, Cornelius Appel, Karen Ball, Orianna B. Briggs, Richard Buchen, Johannes Cerantola, Valerio Chariton, Stella Coleman, Amy L. Cynn, Hyunchae Dattelbaum, Dana Dwivedi, Anand Eggert, Jon H. Ehm, Lars Evans, William J. Glazyrin, Konstantin Goncharov, Alexander F. Graafsma, Heinz Howard, Alex Huston, Larissa Hutchinson, Trevor M. Hwang, Huijeong Jacob, Sony Kaa, Johannes Kim, Jaeyong Kim, Minseob Koemets, Egor Konôpková, Zuzana Langenhorst, Falko Laurus, Torsten Li, Xinyang Mainberger, Jona Marquardt, Hauke McBride, Emma E. McGuire, Christopher McHardy, James D. McMahon, Malcolm I. McWilliams, R. Stewart Méndez, Alba S. J. Mondal, Anshuman Morard, Guillaume O’Bannon, Earl F. Otzen, Christoph Pépin, Charles M. Prakapenka, Vitali B. Prescher, Clemens Preston, Thomas R. Redmer, Ronald Roeper, Michael Sanchez-Valle, Carmen Smith, Dean Smith, Raymond F. Sneed, Daniel Speziale, Sergio Spitzbart, Tobias Stern, Stephan Sturtevant, Blake T. Sztuk-Dambietz, Jolanta Talkovski, Peter Velisavljevic, Nenad Vennari, Cara Wu, Zhongyan Yoo, Choong-Shik Zastrau, Ulf Jenei, Zsolt Liermann, Hanns-Peter |
author_sort | Husband, Rachel J. |
collection | PubMed |
description | 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 (≤10(3) 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 N(2) at 23 TPa s(−1). |
format | Online Article Text |
id | pubmed-10325015 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | International Union of Crystallography |
record_format | MEDLINE/PubMed |
spelling | pubmed-103250152023-07-07 A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell Husband, Rachel J. Strohm, Cornelius Appel, Karen Ball, Orianna B. Briggs, Richard Buchen, Johannes Cerantola, Valerio Chariton, Stella Coleman, Amy L. Cynn, Hyunchae Dattelbaum, Dana Dwivedi, Anand Eggert, Jon H. Ehm, Lars Evans, William J. Glazyrin, Konstantin Goncharov, Alexander F. Graafsma, Heinz Howard, Alex Huston, Larissa Hutchinson, Trevor M. Hwang, Huijeong Jacob, Sony Kaa, Johannes Kim, Jaeyong Kim, Minseob Koemets, Egor Konôpková, Zuzana Langenhorst, Falko Laurus, Torsten Li, Xinyang Mainberger, Jona Marquardt, Hauke McBride, Emma E. McGuire, Christopher McHardy, James D. McMahon, Malcolm I. McWilliams, R. Stewart Méndez, Alba S. J. Mondal, Anshuman Morard, Guillaume O’Bannon, Earl F. Otzen, Christoph Pépin, Charles M. Prakapenka, Vitali B. Prescher, Clemens Preston, Thomas R. Redmer, Ronald Roeper, Michael Sanchez-Valle, Carmen Smith, Dean Smith, Raymond F. Sneed, Daniel Speziale, Sergio Spitzbart, Tobias Stern, Stephan Sturtevant, Blake T. Sztuk-Dambietz, Jolanta Talkovski, Peter Velisavljevic, Nenad Vennari, Cara Wu, Zhongyan Yoo, Choong-Shik Zastrau, Ulf Jenei, Zsolt Liermann, Hanns-Peter J Synchrotron Radiat Research Papers 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 (≤10(3) 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 N(2) at 23 TPa s(−1). International Union of Crystallography 2023-06-15 /pmc/articles/PMC10325015/ /pubmed/37318367 http://dx.doi.org/10.1107/S1600577523003910 Text en © Rachel J. Husband et al. 2023 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited. |
spellingShingle | Research Papers Husband, Rachel J. Strohm, Cornelius Appel, Karen Ball, Orianna B. Briggs, Richard Buchen, Johannes Cerantola, Valerio Chariton, Stella Coleman, Amy L. Cynn, Hyunchae Dattelbaum, Dana Dwivedi, Anand Eggert, Jon H. Ehm, Lars Evans, William J. Glazyrin, Konstantin Goncharov, Alexander F. Graafsma, Heinz Howard, Alex Huston, Larissa Hutchinson, Trevor M. Hwang, Huijeong Jacob, Sony Kaa, Johannes Kim, Jaeyong Kim, Minseob Koemets, Egor Konôpková, Zuzana Langenhorst, Falko Laurus, Torsten Li, Xinyang Mainberger, Jona Marquardt, Hauke McBride, Emma E. McGuire, Christopher McHardy, James D. McMahon, Malcolm I. McWilliams, R. Stewart Méndez, Alba S. J. Mondal, Anshuman Morard, Guillaume O’Bannon, Earl F. Otzen, Christoph Pépin, Charles M. Prakapenka, Vitali B. Prescher, Clemens Preston, Thomas R. Redmer, Ronald Roeper, Michael Sanchez-Valle, Carmen Smith, Dean Smith, Raymond F. Sneed, Daniel Speziale, Sergio Spitzbart, Tobias Stern, Stephan Sturtevant, Blake T. Sztuk-Dambietz, Jolanta Talkovski, Peter Velisavljevic, Nenad Vennari, Cara Wu, Zhongyan Yoo, Choong-Shik Zastrau, Ulf Jenei, Zsolt Liermann, Hanns-Peter A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell |
title | A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell |
title_full | A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell |
title_fullStr | A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell |
title_full_unstemmed | A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell |
title_short | A MHz X-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell |
title_sort | mhz x-ray diffraction set-up for dynamic compression experiments in the diamond anvil cell |
topic | Research Papers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10325015/ https://www.ncbi.nlm.nih.gov/pubmed/37318367 http://dx.doi.org/10.1107/S1600577523003910 |
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