High-pressure X-ray photon correlation spectroscopy at fourth-generation synchrotron sources

Fuente: arXiv
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Main Authors: Cornet, Antoine, Ronca, Alberto, Shen, Jie, Zontone, Federico, Chushkin, Yuriy, Cammarata, Marco, Garbarino, Gaston, Sprung, Michael, Westermaier, Fabian, Deschamps, Thierry, Ruta, Beatrice
Format: Preprint
Published: 2024
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author Cornet, Antoine
Ronca, Alberto
Shen, Jie
Zontone, Federico
Chushkin, Yuriy
Cammarata, Marco
Garbarino, Gaston
Sprung, Michael
Westermaier, Fabian
Deschamps, Thierry
Ruta, Beatrice
author_facet Cornet, Antoine
Ronca, Alberto
Shen, Jie
Zontone, Federico
Chushkin, Yuriy
Cammarata, Marco
Garbarino, Gaston
Sprung, Michael
Westermaier, Fabian
Deschamps, Thierry
Ruta, Beatrice
contents A new experimental setup combining X-Ray Photon Correlation Spectroscopy (XPCS) in the hard x-ray regime and a high-pressure sample environment is developed to monitor the pressure dependence of the internal motion of complex systems down to the atomic scale in the multi-gigapascal range, from room temperature to 600K. The high flux of coherent high energy x-rays at 4th generation synchrotron source solves the problems caused by the absorption of the Diamond Anvil Cells used to generate the high pressure, enabling the measurement of the intermediate scattering function over 6 orders of magnitude in time, from $10^{-3}$ s to $10^{3}$s. The constraints posed by the high-pressure generation such as the preservation of X-ray coherence, as well as the sample, pressure and temperature stability, are discussed, and the feasibility of high-pressure XPCS is demonstrated through results obtained on metallic glasses.
format Preprint
id arxiv_https___arxiv_org_abs_2402_05298
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle High-pressure X-ray photon correlation spectroscopy at fourth-generation synchrotron sources
Cornet, Antoine
Ronca, Alberto
Shen, Jie
Zontone, Federico
Chushkin, Yuriy
Cammarata, Marco
Garbarino, Gaston
Sprung, Michael
Westermaier, Fabian
Deschamps, Thierry
Ruta, Beatrice
Applied Physics
Materials Science
A new experimental setup combining X-Ray Photon Correlation Spectroscopy (XPCS) in the hard x-ray regime and a high-pressure sample environment is developed to monitor the pressure dependence of the internal motion of complex systems down to the atomic scale in the multi-gigapascal range, from room temperature to 600K. The high flux of coherent high energy x-rays at 4th generation synchrotron source solves the problems caused by the absorption of the Diamond Anvil Cells used to generate the high pressure, enabling the measurement of the intermediate scattering function over 6 orders of magnitude in time, from $10^{-3}$ s to $10^{3}$s. The constraints posed by the high-pressure generation such as the preservation of X-ray coherence, as well as the sample, pressure and temperature stability, are discussed, and the feasibility of high-pressure XPCS is demonstrated through results obtained on metallic glasses.
title High-pressure X-ray photon correlation spectroscopy at fourth-generation synchrotron sources
topic Applied Physics
Materials Science
url https://arxiv.org/abs/2402.05298