论文标题
高导射射频(SRF)冷冻模块的原位场发射缓解的等离子体处理
Plasma Processing for In-Situ Field Emission Mitigation of Superconducting Radiofrequency (SRF) Cryomodules
论文作者
论文摘要
田间发射(FE)是在加速器中运行的超导射频(SRF)腔的主要限制因素之一,并且每当污染物(如灰尘,金属片甚至吸收剂)都存在于空腔高电场区域的表面上时,它就会发生。场发射可减少最大可实现的加速场,并生成可能与光束相互作用,损坏或激活梁线的自由电子。可用于缓解此问题的一种实用方法是原位血浆清洁或血浆处理。可以在原位应用的处理的开发非常有利,因为它可以恢复CryoModule性能,而无需拆卸整个Cryomodule,这是一个非常昂贵且耗时的过程。另一方面,等离子体处理仅需要冷冻模块为室温和随后的被污染腔的加工。整个过程相当快,涉及数量有限的人员。由于这些原因,我们想倡导继续投资于等离子体处理的R \&D,以优化其在冷冻模块中的适用性,并将技术扩展到其他频率范围和空腔几何形状。
Field emission (FE) is one of the main limiting factors of superconducting radio-frequency (SRF) cavities operating in accelerators and it occurs whenever contaminants, like dust, metal flakes or even absorbates, are present on the surface of the cavity high electric field region. Field emission reduces the maximum achievable accelerating field and generates free electrons that may interact with the beam, damage or activate the beamline. One practical method that can be used to mitigate this problem is in-situ plasma cleaning, or plasma processing. The development of a processing that can be applied in-situ is extremely advantageous, since it enables the recovery of the cryomodule performance without the need of disassembling the whole cryomodule, which is an extremely expensive and time-consuming process. On the other hand, plasma processing only requires the cryomodule warm-up to room-temperature and the subsequent processing of the contaminated cavities. The entire process is reasonably quick and involves a limited number of personnel. For these reasons we would like to advocate for continuing to invest in the R\&D of plasma processing to optimize its applicability in cryomodules and for extending the technique to other frequency ranges and cavities geometries.