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Автор B J Albright
Автор L Yin
Автор B M Hegelich
Автор K J Bowers
Автор C Huang
Автор A Henig
Автор J C Fernández
Автор K A Flippo
Автор S A Gaillard
Автор T J T Kwan
Автор X Q Yan
Автор T Tajima
Автор D Habs
Дата выпуска 2010-08-01
dc.description A simple model has been derived for expansion of a thin (up to 100s of nm thickness) target initially of solid density irradiated by an ultraintense laser. In this regime, ion acceleration mechanisms, such as the Break-Out Afterburner (BOA) [1], emerge with the potential for dramatically improved energy, efficiency, and energy spread. Ion beams have been proposed [2] as drivers for fast ignition inertial confinement fusion [3]. Analysis of kinetic simulations of the BOA shows the period of enhanced acceleration occurs between times t<sub>1</sub>, when the target becomes relativistically transparent to the laser, and t<sub>2</sub>, when the target becomes classically underdense and the enhanced acceleration terminates. A simple model for target expansion has been derived that contains early, one-dimensional (1D) expansion of the target and three-dimensional (3D) expansion at late times. The model assumes expansion is slab-like at the instantaneous ion sound speed and requires as input target composition, laser intensity, laser spot area, and the efficiency of laser absorption into electron thermal energy.
Формат application.pdf
Издатель Institute of Physics Publishing
Копирайт © 2010 IOP Publishing Ltd
Название Ultraintense laser interaction with nanoscale targets: a simple model for layer expansion and ion acceleration
Тип paper
DOI 10.1088/1742-6596/244/4/042022
Electronic ISSN 1742-6596
Print ISSN 1742-6588
Журнал Journal of Physics: Conference Series
Том 244
Первая страница 42022
Последняя страница 42025
Выпуск 4

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