Overview of X-ray Thomson scattering measurements of extreme states of matter

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Main Authors: Dornheim, Tobias, Bellenbaum, Hannah, Gawne, Thomas, Vorberger, Jan, Gericke, Dirk O.
Format: Preprint
Published: 2026
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author Dornheim, Tobias
Bellenbaum, Hannah
Gawne, Thomas
Vorberger, Jan
Gericke, Dirk O.
author_facet Dornheim, Tobias
Bellenbaum, Hannah
Gawne, Thomas
Vorberger, Jan
Gericke, Dirk O.
contents Since its first successful applications in the early 2000s, x-ray Thomson scattering (XRTS) has emerged as one of the most successful tools for the diagnostics of extreme states of matter in the laboratory. By sampling the dynamic structure factor of the electrons, XRTS is capable of giving detailed insights into the atomic-scale physics of the matter probed. Moreover, thermodynamic parameters, like the mass density, temperature, and ionization state, are routinely inferred from XRTS measurements, providing a comprehensive characterization of the sample probed. In addition, the dynamic structure factor is of considerable interest in its own right as it contains information on other effects such as the plasmon shift, miscibility between species, electronic states and potential transitions between these states. In this work, we provide an extensive overview of previous XRTS experiments at both traditional laser and X-ray free electron laser facilities, including information about the probed material (elements, conditions), scattering geometry, analysis methods as well as corresponding references. In addition, we briefly discuss the advantages and shortcomings of widely used analysis methods for XRTS spectra and reflect on upcoming future developments in XRTS experiments and theory.
format Preprint
id arxiv_https___arxiv_org_abs_2604_23687
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Overview of X-ray Thomson scattering measurements of extreme states of matter
Dornheim, Tobias
Bellenbaum, Hannah
Gawne, Thomas
Vorberger, Jan
Gericke, Dirk O.
Plasma Physics
Since its first successful applications in the early 2000s, x-ray Thomson scattering (XRTS) has emerged as one of the most successful tools for the diagnostics of extreme states of matter in the laboratory. By sampling the dynamic structure factor of the electrons, XRTS is capable of giving detailed insights into the atomic-scale physics of the matter probed. Moreover, thermodynamic parameters, like the mass density, temperature, and ionization state, are routinely inferred from XRTS measurements, providing a comprehensive characterization of the sample probed. In addition, the dynamic structure factor is of considerable interest in its own right as it contains information on other effects such as the plasmon shift, miscibility between species, electronic states and potential transitions between these states. In this work, we provide an extensive overview of previous XRTS experiments at both traditional laser and X-ray free electron laser facilities, including information about the probed material (elements, conditions), scattering geometry, analysis methods as well as corresponding references. In addition, we briefly discuss the advantages and shortcomings of widely used analysis methods for XRTS spectra and reflect on upcoming future developments in XRTS experiments and theory.
title Overview of X-ray Thomson scattering measurements of extreme states of matter
topic Plasma Physics
url https://arxiv.org/abs/2604.23687