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Powerful Cherenkov oscillators with 2D distributed feedback

机译:具有2D分布式反馈的强大Cherenkov振荡器

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The feasibility of using 2D distributed feedback based on 2D planar and coaxial Bragg structures for generating spatially coherent radiation from rectilinear ribbon and tubular electron beams is studied. One-section and sectional Cherenkov masers are analyzed. In the former design, a 2D Bragg structure acts as a resonator and a periodic slow-wave system simultaneously. In the latter (sectional) design, radiation is synchronized in a 2D Bragg structure that is placed at the cathode end of the interaction space and couples longitudinal and transverse (azimuthal) wave flows. The wave is amplified by the electron beam mainly in the fairly long middle section. The output (collector) part contains a standard 1D Bragg structure that partially reflects the amplified radiation toward the cathode and closes the feedback circuit. It is shown that dissipation introduced into the 2D Bragg structure of the sectional design makes it possible to increase one of the transverse sizes of the system to ~10~3 wavelengths with the energy exchange efficiency and one-frequency masing mode stability remaining the same. With such an overdimension, the millimeter-wave radiation integral power may reach a gigawatt level.
机译:研究了使用基于二维平面和同轴布拉格结构的二维分布式反馈从直线带状和管状电子束生成空间相干辐射的可行性。分析了切伦科夫一切和一切的切面。在前一种设计中,二维布拉格结构同时充当谐振器和周期性慢波系统。在后一种(截面)设计中,辐射以2D布拉格结构同步,该结构放置在相互作用空间的阴极端,并耦合纵向和横向(方位)波流。该波主要在相当长的中间部分被电子束放大。输出(收集器)部分包含标准的1D布拉格结构,该结构将放大后的辐射部分反射到阴极并闭合反馈电路。结果表明,在截面设计的2D布拉格结构中引入的耗散使得可以将系统的横向尺寸之一增加到〜10〜3个波长,而能量交换效率和单频质量模式稳定性保持不变。由于尺寸过大,毫米波辐射积分功率可能会达到千兆瓦级别。

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