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Inhibition of fast electron energy deposition due to preplasma filling of cone-attached targets.

Authors :
Baton, S. D.
Koenig, M.
Fuchs, J.
Benuzzi-Mounaix, A.
Guillou, P.
Loupias, B.
Vinci, T.
Gremillet, L.
Rousseaux, C.
Drouin, M.
Lefebvre, E.
Dorchies, F.
Fourment, C.
Santos, J. J.
Batani, D.
Morace, A.
Redaelli, R.
Nakatsutsumi, M.
Kodama, R.
Nishida, A.
Source :
Physics of Plasmas; Apr2008, Vol. 15 Issue 4, p042706, 11p, 4 Color Photographs, 1 Black and White Photograph, 1 Diagram, 11 Graphs
Publication Year :
2008

Abstract

We present experimental and numerical results on the propagation and energy deposition of laser-generated fast electrons into conical targets. The first part reports on experimental measurements performed in various configurations in order to assess the predicted benefit of conical targets over standard planar ones. For the conditions investigated here, the fast electron-induced heating is found to be much weaker in cone-guided targets irradiated at a laser wavelength of 1.057 μm, whereas frequency doubling of the laser pulse permits us to bridge the disparity between conical and planar targets. This result underscores the prejudicial role of the prepulse-generated plasma, whose confinement is enhanced in conical geometry. The second part is mostly devoted to the particle-in-cell modeling of the laser-cone interaction. In qualitative agreement with the experimental data, the calculations show that the presence of a large preplasma leads to a significant decrease in the fast electron density and energy flux near the target rear side. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1070664X
Volume :
15
Issue :
4
Database :
Complementary Index
Journal :
Physics of Plasmas
Publication Type :
Academic Journal
Accession number :
31881454
Full Text :
https://doi.org/10.1063/1.2903054