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Main Authors: Poole, H., Ginnane, M. K., Millot, M., Collins, G. W., Hu, S. X., Polsin, D., Saha, R., Topp-Mugglestone, J., White, T. G., Chapman, D. A., Rygg, J. R., Regan, S. P., Gregori, G.
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2309.14905
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author Poole, H.
Ginnane, M. K.
Millot, M.
Collins, G. W.
Hu, S. X.
Polsin, D.
Saha, R.
Topp-Mugglestone, J.
White, T. G.
Chapman, D. A.
Rygg, J. R.
Regan, S. P.
Gregori, G.
author_facet Poole, H.
Ginnane, M. K.
Millot, M.
Collins, G. W.
Hu, S. X.
Polsin, D.
Saha, R.
Topp-Mugglestone, J.
White, T. G.
Chapman, D. A.
Rygg, J. R.
Regan, S. P.
Gregori, G.
contents Ionic structure of high pressure, high temperature fluids is a challenging theoretical problem with applications to planetary interiors and fusion capsules. Here we report a multi-messenger platform using velocimetry and \textit{in situ} angularly and spectrally resolved X-ray scattering to measure the thermodynamic conditions and ion structure factor of materials at extreme pressures. We document the pressure, density, and temperature of shocked silicon near 100 GPa with uncertainties of 6%, 2%, and 20%, respectively. The measurements are sufficient to distinguish between and rule out some ion screening models.
format Preprint
id arxiv_https___arxiv_org_abs_2309_14905
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Multi-Messenger Measurements of the Static Structure of Shock-Compressed Liquid Silicon at 100 GPa
Poole, H.
Ginnane, M. K.
Millot, M.
Collins, G. W.
Hu, S. X.
Polsin, D.
Saha, R.
Topp-Mugglestone, J.
White, T. G.
Chapman, D. A.
Rygg, J. R.
Regan, S. P.
Gregori, G.
High Energy Physics - Experiment
Ionic structure of high pressure, high temperature fluids is a challenging theoretical problem with applications to planetary interiors and fusion capsules. Here we report a multi-messenger platform using velocimetry and \textit{in situ} angularly and spectrally resolved X-ray scattering to measure the thermodynamic conditions and ion structure factor of materials at extreme pressures. We document the pressure, density, and temperature of shocked silicon near 100 GPa with uncertainties of 6%, 2%, and 20%, respectively. The measurements are sufficient to distinguish between and rule out some ion screening models.
title Multi-Messenger Measurements of the Static Structure of Shock-Compressed Liquid Silicon at 100 GPa
topic High Energy Physics - Experiment
url https://arxiv.org/abs/2309.14905