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Design, fabrication, and high-gradient testing of an X -band, traveling-wave accelerating structure milled from copper halves

机译:从铜半部铣削X轴,行波加速结构的设计,制造和高梯度测试

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摘要

A prototype 11.994 GHz, traveling-wave accelerating structure for the Compact Linear Collider has been built, using the novel technique of assembling the structure from milled halves. The use of milled halves has many advantages when compared to a structure made from individual disks. These include the potential for a reduction in cost, because there are fewer parts, as well as a greater freedom in choice of joining technology because there are no rf currents across the halves’ joint. Here we present the rf design and fabrication of the prototype structure, followed by the results of the high-power test and post-test surface analysis. During high-power testing the structure reached an unloaded gradient of 100  MV/m at a rf breakdown rate of less than 1.5×10^{-5}  breakdowns/pulse/m with a 200 ns pulse. This structure has been designed for the CLIC testing program but construction from halves can be advantageous in a wide variety of applications.
机译:采用从铣削半部组装结构的新颖技术,建立了用于紧凑型线性撞机的运动波加速结构。与由单个磁盘制成的结构相比,使用铣削半部的使用具有许多优点。这些包括降低成本的潜力,因为有较少的部件,以及在选择加入技术的选择中的自由度更大,因为一半的接头没有RF电流。在这里,我们介绍了原型结构的RF设计和制造,其次是高功率测试的结果和测试后表面分析。在高功率测试期间,结构达到100mV / m的卸载梯度,以距离为200ns脉冲的小于1.5×10 ^ {-5}击穿/脉冲/ m的RF击穿率。该结构专为Clic测试程序而设计,但是从一半的施工可以在各种应用中有利。

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