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Quasi-optical mode converter for high power gyrotron

机译:大功率回旋管的准光模转换器

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Gyrotrons are microwave / millimeter wave devices capable to deliver megawatt level continuous power at a frequency range up to 170GHz. The critical design issues for a high power gyrotrons are: (1) Magnetron injection Gun (2) Cavity with proper mode (3) quasi-optical launcher (4) depressed collector system and (5) RF-window. The higher order cavity modes like TEmp (m, p 2) are normally selected for high power, high frequency, long pulse Gyrotrons. These higher order modes are converted into a Gaussian beam output (TEM00 mode) to transmit power from gyrotron with minimized diffraction losses. The quasi-optical launchers are used to convert higher order modes to a Gaussian beam. The basic quasi-optical launcher consists of a Vlasov type launcher with a helical cut in a cylindrical cavity output waveguide section and a combination of profiled mirrors. The profiled mirrors are basically phase correcting mirrors, which give desired output as Gaussian beam. Fast Fourier Transform (FFT) analysis can be performed to design phase correcting mirrors for quasi-optical launcher of gyrotron. The FFT analysis is being carried to study and design of quasi-optical mirrors for matching optic unit. The simulation is done for a Gaussian beam propagating in free space. The paper discusses about the design of quasi-optical mode converter for the Gyrotron. The FFT analysis on the propagation of a gaussian beam in free space will be presented.
机译:回旋管是微波/毫米波设备,能够在高达170GHz的频率范围内提供兆瓦级的连续功率。大功率旋流器的关键设计问题是:(1)磁控管注入枪(2)具有适当模式的腔体(3)准光发射器(4)低压集电极系统和(5)RF窗口。通常为高功率,高频,长脉冲回旋加速器选择诸如TE mp (m,p >> 2)的高阶腔模。这些更高阶的模式转换为高斯光束输出(TEM 00 模式),从而以最小的衍射损耗从回旋管传输功率。准光学发射器用于将高阶模转换为高斯光束。基本的准光学发射器由一个Vlasov型发射器组成,该发射器在圆柱形腔输出波导段中有一个螺旋形切口,并结合了轮廓镜。轮廓镜基本上是相位校正镜,它们以高斯光束的形式提供所需的输出。可以进行快速傅立叶变换(FFT)分析,以设计用于回旋加速器准光学发射器的相位校正镜。正在进行FFT分析,以研究和设计用于匹配光学单元的准光学镜。对在自由空间中传播的高斯光束进行了仿真。本文讨论了回旋加速器的准光模转换器的设计。将介绍高斯光束在自由空间中传播的FFT分析。

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