Back to Search Start Over

Accurate temperature diagnostics for matter under extreme conditions

Authors :
(0000-0001-7293-6615) Dornheim, T.
(0000-0003-0290-3628) Böhme, M.
(0000-0002-6350-4180) Kraus, D.
Döppner, T.
Preston, T.
(0000-0002-9725-9208) Moldabekov, Z.
(0000-0001-5926-9192) Vorberger, J.
(0000-0001-7293-6615) Dornheim, T.
(0000-0003-0290-3628) Böhme, M.
(0000-0002-6350-4180) Kraus, D.
Döppner, T.
Preston, T.
(0000-0002-9725-9208) Moldabekov, Z.
(0000-0001-5926-9192) Vorberger, J.
Source :
Nature Communications 13(2022), 7911
Publication Year :
2022

Abstract

The experimental investigation of matter under extreme densities and temperatures as they occur for example in astrophysical objects and nuclear fusion applications constitutes one of the most active frontiers at the interface of material science, plasma physics, and engineering. The central obstacle is given by the rigorous interpretation of the experimental results, as even the diagnosis of basic parameters like the temperature T is rendered highly difficult by the extreme conditions. In this work, we present a simple, approximation-free method to extract the temperature of arbitrarily complex materials from scattering experiments, without the need for any simulations or an explicit deconvolution. This new paradigm can be readily implemented at modern facilities and corresponding experiments will have a profound impact on our understanding of warm dense matter and beyond, and open up a gamut of appealing possibilities in the context of thermonuclear fusion, laboratory astrophysics, and related disciplines.

Details

Database :
OAIster
Journal :
Nature Communications 13(2022), 7911
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1415625861
Document Type :
Electronic Resource