Author:
FLEURY X.,BOUQUET S.,STEHLÉ C.,KOENIG M.,BATANI D.,BENUZZI-MOUNAIX A.,CHIÈZE J.-P.,GRANDJOUAN N.,GRENIER J.,HALL T.,HENRY E.,LAFON J.-P.,LEYGNAC S.,MALKA V.,MARCHET B.,MERDJI H.,MICHAUT C.,THAIS F.
Abstract
In this article, we present a laboratory astrophysics experiment
on radiative shocks and its interpretation using simple modelization.
The experiment is performed with a 100-J laser (pulse duration of about
0.5 ns) which irradiates a 1-mm3 xenon gas-filled cell.
Descriptions of both the experiment and the associated diagnostics
are given. The apparition of a radiation precursor in the unshocked
material is evidenced from interferometry diagrams. A model
including self-similar solutions and numerical ones is derived
and fairly good agreements are obtained between the theoretical
and the experimental results.
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics
Cited by
50 articles.
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