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Experimental Opportunities for the Ion Channel Laser

机译:离子通道激光器的实验机会

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The ion channel laser (ICL) was originally proposed as a compact, plasma-based alternative to the free electron laser (FEL) [1]. It is, in many ways, analogous to the FEL, though it offers some distinct advantages all on its own. Most notably, the ICL can accommodate a larger electron energy spread, making it better suited for high-brightness plasma-injected beams. In addition, the same radiator (plasma source) can be used to produce elliptically polarized light without alteration, a feature that is absent in an FEL. Historically, electron beam quality and plasma source development were insufficient for the demonstration of the ICL. In addition, the ICL appeared unfavorable due to the inherently short Rayleigh length of the radiation it produced. Recent literature, however, has shown that high gain can be achieved, despite the short Rayleigh length [2]. In addition, current and near-future facilities are able to provide appropriate beams and plasma sources for the ICL. Experimental opportunities to demonstrate an ICL at the Facility for Advanced Accelerator Experimental Tests II (FACET-II) are presented, utilizing both a 10 GeV beam originating from the SLAC National Accelerator Laboratory linac, and a 1 GeV high-brightness, plasma-injected beam.
机译:离子通道激光器(ICL)最初提出为自由电子激光器(FEL)的基于紧凑的等离子体的替代方案[1]。在许多方面,类似于FEL,尽管它拥有了一些独特的优势。最值得注意的是,ICL可以容纳更大的电子能量扩散,使其更适合于高亮度等离子体注入光束。另外,相同的散热器(等离子体源)可用于在不改变的情况下产生椭圆偏振光,该特征在于FEL中不存在。从历史上看,电子束质量和等离子体源开发不足以演示ICL。此外,由于它产生的辐射的固有短瑞利长度,ICL出现不利。然而,最近的文献表明,尽管短瑞利长度[2],但尽管可以实现高增益[2]。此外,当前和近期设施能够为ICL提供适当的光束和等离子体源。在进行先进的加速器实验试验II(FaceT-II)的实验机会上展示了用于高级加速器实验试验II(Facet-II)的ICL,利用源自SLAC国家加速器实验室LINAC的10个GEV光束,以及1 GEV高亮度,等离子体注入梁。

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