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Bibliographic Details
Main Authors: Ricks, Matthew, Gleason, Arianna E., Miozzi, Francesca, Yang, Hong, Chariton, Stella, Prakapenka, Vitali B., Sinogeikin, Stanislav V., Sandberg, Richard L., Mao, Wendy L., Pandolfi, Silvia
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2303.08857
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author Ricks, Matthew
Gleason, Arianna E.
Miozzi, Francesca
Yang, Hong
Chariton, Stella
Prakapenka, Vitali B.
Sinogeikin, Stanislav V.
Sandberg, Richard L.
Mao, Wendy L.
Pandolfi, Silvia
author_facet Ricks, Matthew
Gleason, Arianna E.
Miozzi, Francesca
Yang, Hong
Chariton, Stella
Prakapenka, Vitali B.
Sinogeikin, Stanislav V.
Sandberg, Richard L.
Mao, Wendy L.
Pandolfi, Silvia
contents We report on a novel approach to dynamic compression of materials that bridges the gap between previous static- and dynamic- compression techniques, allowing to explore a wide range of pathways in the pressure-temperature space. By combining a dynamic-diamond anvil cell setup with double-sided laser-heating and in situ X-ray diffraction, we are able to perform dynamic compression at high temperature and characterize structural transitions with unprecedented time resolution. Using this method, we investigate the $γ-ε$ phase transition of iron under dynamic compression for the first time, reaching compression rates of hundreds of GPa/s and temperatures of 2000 K. Our results demonstrate a distinct response of the $γ-ε$ and $α-ε$ transitions to the high compression rates achieved. These findings open up new avenues to study tailored dynamic compression pathways in the pressure-temperature space and highlight the potential of this platform to capture kinetic effects in a diamond anvil cell.
format Preprint
id arxiv_https___arxiv_org_abs_2303_08857
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Phase transition kinetics revealed by in situ X-ray diffraction in laser-heated dynamic diamond anvil cells
Ricks, Matthew
Gleason, Arianna E.
Miozzi, Francesca
Yang, Hong
Chariton, Stella
Prakapenka, Vitali B.
Sinogeikin, Stanislav V.
Sandberg, Richard L.
Mao, Wendy L.
Pandolfi, Silvia
Materials Science
We report on a novel approach to dynamic compression of materials that bridges the gap between previous static- and dynamic- compression techniques, allowing to explore a wide range of pathways in the pressure-temperature space. By combining a dynamic-diamond anvil cell setup with double-sided laser-heating and in situ X-ray diffraction, we are able to perform dynamic compression at high temperature and characterize structural transitions with unprecedented time resolution. Using this method, we investigate the $γ-ε$ phase transition of iron under dynamic compression for the first time, reaching compression rates of hundreds of GPa/s and temperatures of 2000 K. Our results demonstrate a distinct response of the $γ-ε$ and $α-ε$ transitions to the high compression rates achieved. These findings open up new avenues to study tailored dynamic compression pathways in the pressure-temperature space and highlight the potential of this platform to capture kinetic effects in a diamond anvil cell.
title Phase transition kinetics revealed by in situ X-ray diffraction in laser-heated dynamic diamond anvil cells
topic Materials Science
url https://arxiv.org/abs/2303.08857