Hydrodynamic Scaling Analysis of Nuclear Fusion driven by ultra-intense laser-plasma interactions
Plasma Physics
2012-12-05 v3 Nuclear Theory
Atomic and Molecular Clusters
Abstract
We discuss scaling laws of fusion yields generated by laser-plasma interactions. The yields are found to scale as a function of the laser power. The origin of the scaling law in the laser driven fusion yield is derived in terms of hydrodynamic scaling. We point out that the scaling properties can be attributed to the laser power dependence of three terms: the reaction rate, the density of the plasma and the projected range of the plasma particle in the target medium. The resulting scaling relations have a predictive power that enables estimating the fusion yield for a nuclear reaction which has not been investigated by means of the laser accelerated ion beams.
Keywords
Cite
@article{arxiv.1109.5056,
title = {Hydrodynamic Scaling Analysis of Nuclear Fusion driven by ultra-intense laser-plasma interactions},
author = {Sachie Kimura and Aldo Bonasera},
journal= {arXiv preprint arXiv:1109.5056},
year = {2012}
}
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11 pages