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Laser-driven generation of high-quality ultra-relativistic positron beams

机译:激光驱动产生高质量的超相对论正电子束

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An ultra-relativistic electron beam propagating through a high-Z solid triggers an electromagnetic cascade, whereby a large number of high-energy photons and electron-positron pairs are produced mainly via the bremsstrahlung and Bethe-Heitler processes, respectively. These mechanisms are routinely used to generate positron beams in conventional accelerators such as the electron-positron collider (LEP). Here we show that the application of similar physical mechanisms to a laser-driven electron source allows for the generation of high-quality positron beams in a much more compact and cheaper configuration. We anticipate that the application of these results to the next generation of lasers might open the pathway for the realization of an all-optical high-energy electron-positron collider.
机译:穿过高Z固体传播的超相对论电子束会触发电磁级联,从而分别主要通过致辐射和Bethe-Heitler过程产生大量的高能光子和电子-正电子对。这些机制通常用于在常规加速器(如电子-正电子对撞机(LEP))中产生正电子束。在这里,我们表明,将相似的物理机制应用于激光驱动的电子源,可以以更紧凑和更便宜的配置生成高质量的正电子束。我们预计将这些结果应用于下一代激光器可能会为实现全光学高能电子-正电子对撞机开辟道路。

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