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Quasi-Optical Mode Converter/Mirror System for a High-Power Coaxial-Cavity Gyrotron

机译:大功率同轴腔回旋加速器的准光学模式转换器/反射镜系统

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This paper presents the investigation of a mirror system of a quasi-optical (QO) mode converter for a high-power coaxial-cavity gyrotron. The mirror system consists of three mirrors. The first mirror is a quasi-elliptical one. Based on the Katsenelenbaum–Semenov Algorithm (KSA), the second and the third mirrors are iteratively optimized as adapted phase-correcting mirrors to transform the outgoing wave beam into a fundamental Gaussian structure. The investigation shows that the focal length of the quasi-elliptical mirror has a great influence on the optimized conversion efficiency, and, hence, it should be chosen to match the asymptotic beam growth (ABG) angle well in order to obtain high conversion efficiency. The design of a mirror system has been performed for a 2 MW, continuous wave (CW), 170 GHz, and$hboxTE_34,19$-mode coaxial-cavity gyrotron, which is under development at Forschungszentrum Karlsruhe, Germany. Taking into account the size of the mirrors and the conversion efficiency, a mirror system has been designed with a conversion efficiency of 98.3%.
机译:本文介绍了一种用于大功率同轴腔回旋管的准光学(QO)模式转换器的反射镜系统的研究。镜子系统由三个镜子组成。第一个镜子是准椭圆镜。基于Katsenelenbaum-Semenov算法(KSA),第二和第三反射镜作为适应性相位校正镜进行了迭代优化,以将出射光束转换为基本的高斯结构。研究表明,准椭圆镜的焦距对优化转换效率有很大影响,因此,为了获得较高的转换效率,应选择与渐近光束生长角(ABG)匹配的角度。反射镜系统的设计是针对2兆瓦,连续波(CW),170 GHz和hboxTE_34,19 $模式同轴腔回旋管进行的,该回旋管正在德国的Forschungszentrum Karlsruhe进行开发。考虑到镜子的尺寸和转换效率,设计了具有98.3%的转换效率的镜子系统。

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