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Mirror Design for Use in Gyrotron Quasi-Optical Mode Converters

机译:用于回旋加速器准光学模式转换器的镜面设计

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An iterative planar- and cylindrical-based mirror design procedure is discussed for use in a gyrotron quasi-optical mode converter. The planar-based mirrors were designed using the iterative Katsenelenbaum–Semenov phase corrector procedure with an input beam obtained from a planar phase reconstruction. Many improvements were made to the design procedure including the use of an advanced phase unwrapping technique. The more robust design procedure resulted in smooth mirror surfaces. It was found that the fraction of power coupled between the target beam and the output of the planar-based mirrors measured in a cold test setup was 0.982. A similar design process was used for a cylindrical-based mirror pair. This design was performed using a simulated output of the launcher. It was found that the fraction of power coupled between the target beam and the theoretical output of the system was 0.990. The fraction of power coupled between the target beam and the phase-reconstructed beam at the output of the second mirror was 0.961. By using a cylindrical phase reconstruction, it was found that the reason for the slightly degraded performance of the cylindrical-based mirrors tested in the low power test setup was due to inaccuracies in modeling the field radiated from the launcher. These inaccuracies are presumed to come from impurities in the mode generator. The techniques discussed in this article can be used to improve the efficiency of quasi-optical mode converters and thus improve the operation of gyrotrons.
机译:讨论了一种基于平面和圆柱的迭代反射镜设计程序,用于回旋准光模式转换器。基于平面的反射镜是使用迭代的Katsenelenbaum-Semenov相位校正器程序设计的,并具有从平面相位重建获得的输入光束。设计过程进行了许多改进,包括使用了先进的相位展开技术。更坚固的设计程序使镜面光滑。发现在冷测试装置中测得的目标光束和基于平面的反射镜的输出之间耦合的功率分数为0.982。类似的设计过程用于圆柱镜对。该设计是使用发射器的模拟输出执行的。发现目标光束和系统的理论输出之间耦合的功率分数为0.990。在第二反射镜的输出处耦合在目标光束和相重构光束之间的功率份额为0.961。通过使用圆柱相位重建,发现在低功率测试设置中测试的基于圆柱镜的性能略有下降的原因是由于对发射器辐射场的建模不准确。推测这些不准确是由于模式发生器中的杂质引起的。本文讨论的技术可用于提高准光学模式转换器的效率,从而改善回旋加速器的运行。

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