首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Operation of a high-gradient superconducting radio-frequency cavity with a non-evaporable getter pump
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Operation of a high-gradient superconducting radio-frequency cavity with a non-evaporable getter pump

机译:带有不可蒸发吸气泵的高梯度超导射频腔的运行

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The use of non-evaporable getter (NEG) pumps in particle accelerators has increased significantly over the past few years because of their large pumping speed, particularly for hydrogen, compared to the size of the pump. A concern about using such pumps in superconducting radio-frequency (SRF) accelerators is the possibility of shedding particulates which could then migrate into the SRF cavities and produce field emission, therefore degrading the cavity performance. One option to mitigate such issue is to use sintered getter materials which intrinsically offer superior mechanical and particle retention properties. In this article we present the results from cryogenic RF tests of a high-gradient SRF cavity after being evacuated several times with an NEG pump equipped with sintered getter disks and placed in close proximity to the cavity. The results showed that the cavity performance was not affected by the pump up to the quench gradient of 34 MV/m. As a result of this study, two such NEG pumps have been installed next to a cryomodule in the CEBAF accelerator to maintain ultra-high vacuum in the SRF cryomodule and two adjacent warm girder sections.
机译:在过去的几年中,由于与粒子泵相比,粒子加速器中的不可吸入的吸气(NEG)泵的抽速很高,特别是对于氢气,其抽速大大提高。在超导射频(SRF)加速器中使用此类泵的担忧是有可能脱落颗粒,然后这些颗粒会迁移到SRF腔中并产生场发射,从而降低腔性能。减轻此类问题的一种选择是使用烧结吸气剂材料,该材料本身具有出色的机械和颗粒保留性能。在本文中,我们介绍了使用配备有烧结吸气盘的NEG泵抽空几次并放置在腔体附近之后,对高梯度SRF腔体进行低温RF测试的结果。结果表明,在高达34 MV / m的淬火梯度下,腔体性能不受泵的影响。这项研究的结果是,在CEBAF加速器中的一个低温模块旁边安装了两个这样的NEG泵,以保持SRF低温模块和两个相邻的热梁部分中的超高真空。

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