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Current advances in smoothing of laser intensity profile

Authors :
Benocci, R
Batani, D
Dezulian, R
Redaelli, R
Lucchini, G
Canova, F
Stabile, H
Faure, J
Krousky, E
Masek, K
Pfeifer, M
Skala, J
Dudzak, R
Koenig, M
Tikhonchuk, V
Nicolai, P
Malka, V
Benocci R.
Batani D.
Dezulian R.
Redaelli R.
Lucchini G.
Canova F.
Stabile H.
Faure J.
Krousky E.
Masek K.
Pfeifer M.
Skala J.
Dudzak R.
Koenig M.
Tikhonchuk V.
Nicolai Ph.
Malka V.
Benocci, R
Batani, D
Dezulian, R
Redaelli, R
Lucchini, G
Canova, F
Stabile, H
Faure, J
Krousky, E
Masek, K
Pfeifer, M
Skala, J
Dudzak, R
Koenig, M
Tikhonchuk, V
Nicolai, P
Malka, V
Benocci R.
Batani D.
Dezulian R.
Redaelli R.
Lucchini G.
Canova F.
Stabile H.
Faure J.
Krousky E.
Masek K.
Pfeifer M.
Skala J.
Dudzak R.
Koenig M.
Tikhonchuk V.
Nicolai Ph.
Malka V.
Publication Year :
2008

Abstract

We present the experimental results, and their analysis, connected to the possibility to control laser inhomogeneities exploiting the non-uniform electron density distribution created by the laser while propagating in a gas jet. The induced self-refraction in the plasma created in the gas medium results in re-distributing local over-intensities over larger surfaces. The experiment at the PALS laser facility has been performed creating a large non-uniformity by a wedge arrangement and recording the static and dynamic images with and without the coupling to an Al target.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1308931043
Document Type :
Electronic Resource