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Sub-THz beam-shaping mirror system designs for Quasi-Optical mode converters in high-power gyrotrons

机译:大功率回旋管中准光模转换器的亚太赫兹光束整形镜系统设计

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摘要

Methods, algorithms and theories required in sub-THz beam-shaping mirror designs for Quasi-Optical (QO) mode converters (launchers) in high-power gyrotrons are presented in this article. The state-of-the-art design procedure highlights many novel ideas like the Iterative Phase Retrieval (IPR) technique, the Taylor-Interpolation FFT (TI-FFT) algorithm and the iterative Geometrical Optical Phase Correction (GOPC) method, which ensure fast, reliable, flexible and accurate sub-THz beam-shaping mirror system designs in the high-power gyrotron applications. The efficiency of the sub-THz beam-shaping mirror system procedure has been successfully tested in a sub-THz beam-shaping 4-mirror system design for a single-mode (TE22,6/110GHz), 1.25 MW CPI gyrotron to shape the input beam from a QO launcher into the target Fundamental Gaussian Beam (FGB) to be injected into the corrugated waveguide through the diamond window, with up to 99.85% coupling between the designed output beam and the target FGB.
机译:本文介绍了大功率旋流器中准光电(QO)模式转换器(发射器)的亚太赫兹光束整形镜设计所需的方法,算法和理论。最新的设计程序重点介绍了许多新颖的思想,例如迭代相位检索(IPR)技术,泰勒插值FFT(TI-FFT)算法和迭代几何光学相位校正(GOPC)方法,它们可确保快速实现大功率回旋管应用中的可靠,灵活,准确的亚太赫兹光束整形镜系统设计。在用于单模(TE22,6 / 110GHz)1.25 MW CPI陀螺仪的亚太赫兹光束整形四镜系统设计中,已经成功测试了次太赫兹光束整形镜系统程序的效率。 QO发射器的输入光束进入目标基本高斯光束(FGB),然后通过金刚石窗口注入波纹波导中,设计输出光束与目标FGB之间的耦合高达99.85%。

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