Analysis of microscopic properties of radiative shock experiments performed at the Orion laser facility
File(s)analysis_of_microscopic_properties_of_radiative_shock_.pdf (1.35 MB)
Published version
Author(s)
Type
Journal Article
Abstract
In this work we have conducted a study of the radiative and spectroscopic properties of the radiative precursor and the post-shock region from experiments with radiative shocks in xenon performed at the Orion laser facility. The study is based on post-processing of radiation hydrodynamics simulations of the experiment. In particular, we have analyzed the thermodynamic regime of the plasma, the charge state distributions, the monochromatic opacities and emissivities, and the specific intensities for plasma conditions of both regions. The study of the intensities is a useful tool to estimate ranges of electron temperatures present in the xenon plasma in these
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experiments and the analysis performed of the microscopic properties commented above helps to better understand the intensity spectra. Finally, a theoretical analysis of the possibility of the onset of isobaric thermal instabilities in the post-shock has been made, concluding that the instabilities obtained in the radiative hydrodynamic simulations could be thermal ones due to strong radiative cooling.
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experiments and the analysis performed of the microscopic properties commented above helps to better understand the intensity spectra. Finally, a theoretical analysis of the possibility of the onset of isobaric thermal instabilities in the post-shock has been made, concluding that the instabilities obtained in the radiative hydrodynamic simulations could be thermal ones due to strong radiative cooling.
Date Issued
2018-06-22
Date Acceptance
2018-04-24
Citation
High Power Laser Science and Engineering, 2018, 6, pp.e36-e36
ISSN
2095-4719
Publisher
Cambridge University Press
Start Page
e36
End Page
e36
Journal / Book Title
High Power Laser Science and Engineering
Volume
6
Copyright Statement
© The Author(s) 2018. This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
Sponsor
The Royal Society
Royal Society
Grant Number
UF120135
Subjects
Science & Technology
Physical Sciences
Optics
high-power lasers
laboratory experiments on radiative shocks
plasma radiative properties
spectroscopy
OPTICALLY THIN
BLAST WAVES
PLASMAS
ASTROPHYSICS
SIMULATIONS
TEMPERATURE
INSTABILITY
TRANSITION
PRECURSORS
STABILITY
Publication Status
Published