English

Effects of Mosaic Crystal Instrument Functions on X-ray Thomson Scattering Diagnostics

Plasma Physics 2024-08-12 v2 Instrumentation and Detectors

Abstract

Mosaic crystals, with their high integrated reflectivities, are widely-employed in spectrometers used to diagnose high energy density systems. X-ray Thomson scattering (XRTS) has emerged as a powerful diagnostic tool of these systems, providing in principle direct access to important properties such as the temperature via detailed balance. However, the measured XRTS spectrum is broadened by the spectrometer instrument function (IF), and without careful consideration of the IF one risks misdiagnosing system conditions. Here, we consider in detail the IF of 40 μ\mum and 100 μ\mum mosaic HAPG crystals, and how the broadening varies across the spectrometer in an energy range of 6.7-8.6 keV. Notably, we find a strong asymmetry in the shape of the IF towards higher energies. As an example, we consider the effect of the asymmetry in the IF on the temperature inferred via XRTS for simulated 80 eV CH plasmas, and find that the temperature can be overestimated if an approximate symmetric IF is used. We therefore expect a detailed consideration of the full IF will have an important impact on system properties inferred via XRTS in both forward modelling and model-free approaches.

Keywords

Cite

@article{arxiv.2406.03301,
  title  = {Effects of Mosaic Crystal Instrument Functions on X-ray Thomson Scattering Diagnostics},
  author = {Thomas Gawne and Hannah Bellenbaum and Luke B. Fletcher and Karen Appel and Carsten Baehtz and Victorien Bouffetier and Erik Brambrink and Danielle Brown and Attila Cangi and Adrien Descamps and Sebastian Göde and Nicholas J. Hartley and Marie-Luise Herbert and Philipp Hesselbach and Hauke Höppner and Oliver S. Humphries and Zuzana Konôpková and Alejandro Laso Garcia and Björn Lindqvist and Julian Lütgert and Michael J. MacDonald and Mikako Makita and Willow Martin and Mikhail Mishchenko and Zhandos A. Moldabekov and Motoaki Nakatsutsumi and Jean-Paul Naedler and Paul Neumayer and Alexander Pelka and Chongbing Qu and Lisa Randolph and Johannes Rips and Toma Toncian and Jan Vorberger and Lennart Wollenweber and Ulf Zastrau and Dominik Kraus and Thomas R. Preston and Tobias Dornheim},
  journal= {arXiv preprint arXiv:2406.03301},
  year   = {2024}
}

Comments

19 pages, 13 figures