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A Tunable Reflecting Load for Multipactor Processing of the RF Power Coupler of a Superconducting Cavity

机译:用于超导腔射频功率耦合器的多步处理的可调反射负载

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In recent years, superconducting RF cavities have been increasingly adopted for use in modern accelerator and light-source facilities. The microwave power is coupled into the accelerating cavity typically through a waveguide or a coaxial power coupler. The multipactor discharge in the RF power coupler constitutes one of the most serious problems to the reliable operation of superconducting cavities. Due to the lack of multipacting-free RF structures, RF processing of the RF power coupler becomes a required and routine procedure to ensure multipacting-free operation of a superconducting RF system. However, for a superconducting cavity with negligible wall losses, variations of the beam loading lead to significant magnitude and phase variations of the wave reflected from the cavity. This greatly complicates the multipacting behavior in the RF power coupler. Hence RF processing under fixed conditions, as is conventionally done, is inadequate for multipactor processing of RF power couplers used in superconducting cavities. Here we report the concept, design, and demonstration of a novel tunable reflecting load for multipactor processing of the RF power coupler. The load realistically models the RF cavity through a broad tuning range of the reflection coefficient, both in magnitude and in phase. It thus allows, for the first time, off-line multipactor processing of the RF power coupler under machine operational conditions before it is attached to the superconducting cavity. A high power prototype was assembled in-house using standard WR1800 rectangular waveguide components. Results of cold and high-power test up to 50 kW, CW were found to be in good agreement with theoretical predictions.
机译:近年来,超导RF腔已越来越多地用于现代加速器和光源设备中。微波功率通常通过波导或同轴功率耦合器耦合到加速腔中。射频功率耦合器中的多极放电是超导腔可靠运行的最严重问题之一。由于缺乏无多步射频结构,RF功率耦合器的RF处理成为确保超导RF系统无多步运行的必不可少的常规过程。但是,对于壁损耗可忽略不计的超导腔,束负载的变化会导致从腔反射的波的幅度和相位发生明显变化。这极大地使RF功率耦合器中的多步行为变得复杂。因此,如常规所做的那样,在固定条件下进行RF处理不足以用于超导腔中使用的RF功率耦合器的多步处理。在这里,我们报告了一种新颖的可调反射负载的概念,设计和演示,该负载用于RF电源耦合器的多步处理。负载通过反射系数的幅度范围和相位的宽泛调整范围来实际地模拟RF腔。因此,它首次允许在机器操作条件下对RF功率耦合器进行离线多线程处理,然后再将其连接到超导腔。使用标准WR1800矩形波导组件在内部组装了高功率原型。高达50 kW(连续波)的冷功率和大功率测试结果与理论预测非常吻合。

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