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Simulating x-ray Thomson scattering signals from high-density, millimetre-scale plasmas at the National Ignition Facility.

Authors :
Chapman, D. A.
Kraus, D.
Kritcher, A. L.
Bachmann, B.
Collins, G. W.
Falcone, R. W.
Gaffney, J. A.
Gericke, D. O.
Glenzer, S. H.
Guymer, T. M.
Hawreliak, J. A.
Landen, O. L.
Le Pape, S.
Ma, T.
Neumayer, P.
Nilsen, J.
Pak, A.
Redmer, R.
Swift, D. C.
Vorberger, J.
Source :
Physics of Plasmas. 2014, Vol. 21 Issue 8, p1-12. 12p. 7 Graphs.
Publication Year :
2014

Abstract

We have developed a model for analysing x-ray Thomson scattering data from high-density, millimetre- scale inhomogeneous plasmas created during ultra-high pressure implosions at the National Ignition Facility in a spherically convergent geometry. The density weighting of the scattered signal and attenuation of the incident and scattered x-rays throughout the target are included using radial profiles of the density, opacity, ionization state, and temperature provided by radiationhydrodynamics simulations. These simulations show that the scattered signal is strongly weighted toward the bulk of the shocked plasma and the Fermi degenerate material near the ablation front. We show that the scattered signal provides a good representation of the temperature of this highly nonuniform bulk plasma and can be determined to an accuracy of ca. 15% using typical data analysis techniques with simple 0D calculations. On the other hand, the mean ionization of the carbon in the bulk is underestimated. We suggest that this discrepancy is due to the convolution of scattering profiles from different regions of the target. Subsequently, we discuss modifications to the current platform to minimise the impact of inhomogeneities, as well as opacity, and also to enable probing of conditions more strongly weighted toward the compressed core. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1070664X
Volume :
21
Issue :
8
Database :
Academic Search Index
Journal :
Physics of Plasmas
Publication Type :
Academic Journal
Accession number :
98694933
Full Text :
https://doi.org/10.1063/1.4893146