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相对论性阿秒电子束源于激光辐照液滴。

Relativistic attosecond electron bunches from laser-illuminated droplets.

机构信息

Max-Planck-Institut für Kernphysik, Postfach 103980, 69029 Heidelberg, Germany.

出版信息

Phys Rev Lett. 2010 Mar 5;104(9):095002. doi: 10.1103/PhysRevLett.104.095002. Epub 2010 Mar 4.

Abstract

The generation of relativistic attosecond electron bunches is observed in three-dimensional, relativistic particle-in-cell simulations of the interaction of intense laser light with droplets. The electron bunches are emitted under certain angles which depend on the ratios of droplet radius to wavelength and plasma frequency to laser frequency. The mechanism behind the multi-MeV attosecond electron bunch generation is investigated using Mie theory. It is shown that the angular distribution and the high electron energies are due to a parameter-sensitive, time-dependent local field enhancement at the droplet surface.

摘要

在强激光与液滴相互作用的三维相对论性粒子模拟中观察到相对论性阿秒电子束的产生。电子束在特定角度下发射,这些角度取决于液滴半径与波长以及等离子体频率与激光频率的比值。利用 Mie 理论研究了多 MeV 阿秒电子束产生的机制。结果表明,角分布和高电子能量是由于液滴表面的参数敏感、时变的局域场增强。

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