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Density evolution after shock release from laser-driven polystyrene (CH) targets in inertial confinement fusion.

Authors :
Shvydky, A.
Haberberger, D.
Maximov, A. V.
Boni, R.
Cao, D.
Carroll-Nellenback, J.
Froula, D. H.
Goncharov, V. N.
Hu, S. X.
Igumenshchev, I. V.
Ivancic, S. T.
Karasiev, V. V.
Knauer, J. P.
Nilson, P. M.
Radha, P. B.
Regan, S. P.
Rygg, J. R.
Sangster, T. C.
Rosen, M. D.
Smalyuk, V. A.
Source :
Physics of Plasmas. Sep2021, Vol. 28 Issue 9, p1-8. 8p.
Publication Year :
2021

Abstract

The evolution of the plasma density in the rarefaction wave formed after a laser-driven shock is released from a CH foil was measured using optical interferometry. It was found that the plasma density profile is very sensitive to the conditions at the back surface of the foil before the shock release. Dedicated experiments demonstrated that radiation preheat by coronal x rays caused early expansion of the back surface and faster expansion of the rarefaction wave. Radiation-hydrodynamics simulations with accurate modeling of radiation preheat from the plasma corona are in good agreement with the experimental results. The early expansion of material interfaces due to coronal x-ray preheat must be evaluated in designing and interpreting laser-driven inertial confinement fusion experiments. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1070664X
Volume :
28
Issue :
9
Database :
Academic Search Index
Journal :
Physics of Plasmas
Publication Type :
Academic Journal
Accession number :
152769359
Full Text :
https://doi.org/10.1063/5.0056850