collaborators

7 papers

physics.plasm-ph2026

A Momentum-Resolved X-ray Thomson Scattering Benchmark of Electronic-Response Models in Warm Dense Aluminium

Dmitrii S. Bespalov, Ulf Zastrau, Zhandos A. Moldabekov +58

The robust diagnosis of conditions generated in warm dense matter (WDM) experiments remains a persistent challenge. Here we describe the measurement of shock-compressed aluminium a…

physics.plasm-ph2026

Quantum effects in plasmas

M. Bonitz, H. Kählert, D. Krimans +11

The year 2025 had been designated by UNESCO as the International Year of Quantum Science and Technology. 125 years ago Max Planck's discovery of radiation quanta started the quantu…

physics.plasm-ph2026

Roadmap for warm dense matter physics

Jan Vorberger, Frank Graziani, David Riley +71

This roadmap presents the state-of-the-art, current challenges and near future developments anticipated in the thriving field of warm dense matter physics. Originating from strongl…

physics.plasm-ph2026

XFEL Imaging Techniques for High Energy Density and Inertial Fusion Energy Research at HED-HiBEF

Alejandro Laso Garcia, Mikhail Mishchenko, Victorien Bouffetier +53

The imaging platform developed at the High Energy Density - Helmholtz International Beamline for Extreme Fields (HED-HiBEF) instrument at the European XFEL and its applications to…

physics.plasm-ph2025

Static linear density response from X-ray Thomson scattering measurements: a case study of warm dense beryllium

Sebastian Schwalbe, Hannah Bellenbaum, Tilo Döppner +8

Linear response theory is ubiquitous throughout physics and plays a central role in the theoretical description of warm dense matter -- an extreme state that occurs within compact…

physics.plasm-ph2025

Model-free Rayleigh weight from x-ray Thomson scattering measurements

Tobias Dornheim, Hannah M. Bellenbaum, Mandy Bethkenhagen +16

X-ray Thomson scattering (XRTS) has emerged as a powerful tool for the diagnostics of matter under extreme conditions. In principle, it gives one access to important system paramet…