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Experimental study of laser-driven compression of spherical microshells

Published online by Cambridge University Press:  09 March 2009

S. Denus
Affiliation:
Institute of Plasma Physics and Laser Microfusion 00-908 Warsaw, p. o. box 49, Poland
H. Fiedorowicz
Affiliation:
Institute of Plasma Physics and Laser Microfusion 00-908 Warsaw, p. o. box 49, Poland
S. Nagraba
Affiliation:
Institute of Plasma Physics and Laser Microfusion 00-908 Warsaw, p. o. box 49, Poland
Z. Patron
Affiliation:
Institute of Plasma Physics and Laser Microfusion 00-908 Warsaw, p. o. box 49, Poland
W. Pawłowicz
Affiliation:
Institute of Plasma Physics and Laser Microfusion 00-908 Warsaw, p. o. box 49, Poland
A. Wilczyński
Affiliation:
Institute of Plasma Physics and Laser Microfusion 00-908 Warsaw, p. o. box 49, Poland
J. Wołowski
Affiliation:
Institute of Plasma Physics and Laser Microfusion 00-908 Warsaw, p. o. box 49, Poland
A. V. Kostierin
Affiliation:
Lebedev Physical Institute, USSR Acad. Sci., Moscow, USSR
Yu. A. Zakharenkov
Affiliation:
Lebedev Physical Institute, USSR Acad. Sci., Moscow, USSR
A. S. Shikanov
Affiliation:
Lebedev Physical Institute, USSR Acad. Sci., Moscow, USSR
G. V. Sklizkov
Affiliation:
Lebedev Physical Institute, USSR Acad. Sci., Moscow, USSR
A. A. Rupasov
Affiliation:
Lebedev Physical Institute, USSR Acad. Sci., Moscow, USSR
M. V. Osipov
Affiliation:
Lebedev Physical Institute, USSR Acad. Sci., Moscow, USSR

Abstract

This paper presents the results of laser-produced plasma investigations at an intensity of 1014W/cm2. Shadowgraphy, interferometry and second harmonic emission measurements were done to evaluate the main hydrodynamic parameters of the plasma.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1986

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References

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