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Characteristics of the mode converter of Gyrotron FU CW GII radiating Gaussian beams in both the fundamental and second harmonic frequency bands

机译:回旋FU CW GII在基波和二次谐波频段内辐射高斯光束的模转换器的特性。

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Gyrotron FU CW GII, the second gyrotron of the Gyrotron FU CW G-series with an internal quasi-optical mode converter, was recently developed at the Research Center for Development of Far-Infrared Region, University of Fukui (FIR FU) [Y. Tatematsu et al., J. Infrared, Millimeter, Terahertz Waves 35, 169 (2014)]. The design oscillation mode of this gyrotron is TE_(8,3) with a corresponding frequency of 393.4 GHz in the second harmonic cyclotron resonance. We observed oscillations of different modes including fundamental harmonic modes in the 200-GHz band upon varying the strength of the magnetic field in the cavity. Radiation patterns corresponding to these modes emitted from the window were Gaussian although the internal mode converter was designed for the TE_(8,3) mode. The directions of the radiated Gaussian beams were found to depend on the oscillation modes with a relation similar to that obtained for another gyrotron that was also equipped with a mode converter. This relation is explained based on geometrical optics. Moreover, numerical calculation with the electromagnetic wave code developed in FIR FU confirmed the same relation. The observed features of the Gyrotron FU CW GII show that it can serve as a unique power source with two frequency bands at 200 and 400 GHz. This result provides a way of developing multiple-frequency gyrotrons.
机译:Gyrotron FU CW GII是具有内部准光模式转换器的Gyrotron FU CW G系列的第二个回旋管,最近在福井大学远红外地区发展研究中心(FIR FU)研制[Y. Tatematsu等人,J。红外,毫米,太赫兹波35,169(2014)]。该回旋管的设计振荡模式为TE_(8,3),在二次谐波回旋共振中具有393.4 GHz的对应频率。我们观察到通过改变空腔中的磁场强度,可以在200 GHz频段内观察到不同模式的振荡,包括基本谐波模式。尽管内部模式转换器是为TE_(8,3)模式设计的,但与从窗口发射的这些模式相对应的辐射模式是高斯型的。发现辐射的高斯光束的方向取决于振荡模式,其关系类似于从另一个也装有模式转换器的回旋管获得的关系。基于几何光学来解释这种关系。而且,用FIR FU开发的电磁波代码进行的数值计算也证实了相同的关系。 Gyrotron FU CW GII的观察到的功能表明,它可以用作具有200 GHz和400 GHz两个频带的独特电源。该结果提供了一种开发多频回旋管的方法。

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