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Acceleration of electron bunches by intense laser pulse in vacuum

机译:真空中强激光脉冲对电子束的加速

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摘要

This paper addresses the output characteristics of real electron bunches accelerated with ultra-intense laser pulse in vacuum by the capture & acceleration scenario (CAS) scheme (see, e.g., Phys. Rev. E66 (2002) 066501). Normally, the size of an electron bunch is much larger than that of a tightly focused and compressed laser pulse. We examine in detail the features of the intersection region, the distribution of electrons which can experience an intense laser field and be accelerated to high energy. Furthermore, the output properties of the accelerated CAS electrons, such as the energy spectra, the angular distributions, the energy-angle correlations, the acceleration gradient, the energy which can be reached with this scheme, the emittances of the outgoing electron bunches, and the dependence of the output properties on the incident electron beam qualities such as the emittance, focusing status, etc. were studied and explained. We found that with intense laser systems and electron beam technology currently available nowadays, the number of CAS electrons can reach 10~4-10~5, when the total number of incident electrons in the practical bunch reaches ~10~8. These results demonstrate that CAS is promising to become a novel mechanism of vacuum laser accelerators.
机译:本文解决了通过捕获和加速场景(CAS)方案在真空中用超高强度激光脉冲加速的真实电子束的输出特性(例如,参见Phys。Rev.E66(2002)066501)。通常,电子束的大小比紧密聚焦和压缩的激光脉冲的大小大得多。我们详细研究了相交区域的特征,可以经受强激光场并被加速为高能的电子分布。此外,加速的CAS电子的输出特性,例如能谱,角分布,能角相关性,加速梯度,该方案可以达到的能量,输出电子束的发射率和研究并解释了输出特性对入射电子束质量如发射率,聚焦状态等的依赖性。我们发现,利用当前可用的强激光系统和电子束技术,当实际束中的入射电子总数达到〜10〜8时,CAS电子的数量可以达到10〜4-10〜5。这些结果表明,CAS有望成为真空激光加速器的新型机理。

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