首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >In-situ plasma processing to increase the accelerating gradients of superconducting radio-frequency cavities
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In-situ plasma processing to increase the accelerating gradients of superconducting radio-frequency cavities

机译:原位等离子体处理以增加超导射频腔的加速梯度

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摘要

A new in-situ plasma processing technique is being developed at the Spallation Neutron Source (SNS) to improve the performance of the cavities in operation. The technique utilizes a low-density reactive oxygen plasma at room temperature to remove top surface hydrocarbons. The plasma processing technique increases the work function of the cavity surface and reduces the overall amount of vacuum and electron activity during cavity operation; in particular it increases the field emission onset, which enables cavity operation at higher accelerating gradients. Experimental evidence also suggests that the SEY of the Nb surface decreases after plasma processing which helps mitigating multipacting issues. In this article, the main developments and results from the plasma processing R&D are presented and experimental results for in-situ plasma processing of dressed cavities in the SNS horizontal test apparatus are discussed.
机译:散裂中子源(SNS)正在开发一种新的原位等离子体处理技术,以改善腔体的工作性能。该技术在室温下利用低密度反应性氧等离子体除去顶表面的碳氢化合物。等离子体处理技术增加了腔体表面的功函数,并降低了腔体操作过程中真空和电子活动的总量;特别地,它增加了场发射的开始,这使得腔可以在更高的加速梯度下运行。实验证据还表明,等离子处理后Nb表面的SEY降低,这有助于缓解多步现象。本文介绍了等离子处理研发的主要进展和结果,并讨论了SNS水平测试设备中修整型腔体的原位等离子处理的实验结果。

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