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JOURNALS // Pis'ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki // Archive

Pis'ma v Zh. Èksper. Teoret. Fiz., 2001 Volume 73, Issue 10, Pages 583–587 (Mi jetpl4396)

This article is cited in 22 papers

CONDENSED MATTER

Modeling cluster jets as targets for high-power ultrashort laser pulses

A. S. Boldareva, V. A. Gasilova, F. Blascob, C. Stenzb, F. Dorchiesb, F. Salinb, A. Ya. Faenovc, T. A. Pikuzc, A. I. Magunovc, I. Yu. Skobelevc

a Institute for Mathematical Modelling, Russian Academy of Sciences, Moscow
b CELIA, Universite Bordeaux
c All-Russian Scientific Research Institute of Physical-Technical and Radiotechnical Measurements, Mendeleevo, Moscow region

Abstract: A hydrodynamic model is formulated that describes the formation of clusters in atomic gas jets expanding into vacuum, which are used as laser plasma targets. Detailed model calculations performed for an argon gas jet describe spatial distributions of the density of gas and cluster phases formed in the Laval nozzle at room temperature in a broad range of entrance gas pressures. The cluster density distribution is significantly inhomogeneous. The cluster distribution features revealed by the model calculations were qualitatively confirmed by the X-ray spectroscopic measurements of the spatial distribution of emission from the plasma created in the jet tar-gets by high-power ultrashort laser pulses.

PACS: 32.30.Rj, 32.80.Rm, 41.50.+h, 52.25.-b, 52.50.-b

Received: 30.03.2001


 English version:
Journal of Experimental and Theoretical Physics Letters, 2001, 73:10, 514–518

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