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A compact Cherenkov laser with a Bragg cavity composed of dielectric gratings

机译:具有介电光栅组成的布拉格腔的紧凑型Cherenkov激光器

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摘要

The growth and saturation characteristics of a Cherenkov laser with a Bragg cavity composed of dielectric gratings are investigated in detail with the aid of numerical simulation based upon the fluid model of the electron beam, For the analysis of the problem, a two-dimensional (2-D) model of the Cherenkov laser is considered which consists of a planar relativistic electron beam and a parallel plate waveguide, one plate of which is loaded with a dielectric sheet. For confinement and extraction of the electromagnetic wave, a Bragg cavity is formed by dielectric gratings fabricated at both ends of a dielectric-loaded parallel plate waveguide. The result of numerical simulation shows that a compact Cherenkov laser, the longitudinal dimension of which is about one order of magnitude smaller than that of the corresponding single-pass Cherenkov laser, can be realized by using a Bragg cavity composed of dielectric gratings.
机译:借助基于电子束流模型的数值模拟,详细研究了具有由介电光栅组成的布拉格腔的切伦科夫激光器的生长和饱和特性,为解决这一问题,采用了二维(2考虑了Cherenkov激光器的-D)模型,该模型由一个平面相对论电子束和一个平行板波导组成,平行板波导的一个板上装有电介质片。为了限制和提取电磁波,布拉格腔由在加载介质的平行平板波导两端制造的介质光栅形成。数值模拟结果表明,可以通过使用由介电光栅组成的布拉格腔来实现紧凑的Cherenkov激光器,其纵向尺寸比相应的单通Cherenkov激光器的纵向尺寸小大约一个数量级。

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