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首页> 外文期刊>Physical review letters >Theoretical Investigation of Controlled Generation of a Dense Attosecond Relativistic Electron Bunch from the Interaction of an Ultrashort Laser Pulse with a Nanofilm
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Theoretical Investigation of Controlled Generation of a Dense Attosecond Relativistic Electron Bunch from the Interaction of an Ultrashort Laser Pulse with a Nanofilm

机译:超短激光脉冲与纳米膜相互作用可控地产生致密的阿秒相对论电子束的理论研究

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摘要

For controllable generation of an isolated attosecond relativistic electron bunch [relativistic electron mirror (REM)] with nearly solid-state density, we propose using a solid nanofilm illuminated normally by an ultraintense femtosecond laser pulse having a sharp rising edge. With two-dimensional (2D) particle-in-cell (PIC) simulations, we show that, in spite of Coulomb forces, all of the electrons in the laser spot can be accelerated synchronously, and the REM keeps its surface charge density during evolution. We also developed a self-consistent 1D theory, which takes into account Coulomb forces, radiation of the electrons, and laser amplitude depletion. This theory allows us to predict the REM parameters and shows a good agreement with the 2D PIC simulations.
机译:为了可控制地产生具有接近固态密度的孤立的阿秒相对论电子束[相对论电子镜(REM)],我们建议使用通常由具有尖锐上升沿的超强飞秒激光脉冲照亮的固体纳米膜。通过二维(2D)单元内粒子(PIC)模拟,我们显示,尽管有库仑力,激光点中的所有电子仍可以同步加速,并且REM在进化过程中保持其表面电荷密度。我们还开发了一种自洽的一维理论,该理论考虑了库仑力,电子辐射和激光振幅损耗。该理论使我们能够预测REM参数,并与2D PIC仿真显示出很好的一致性。

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