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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Commissioning of the Superconducting Linac at the Spallation Neutron Source (SNS)
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Commissioning of the Superconducting Linac at the Spallation Neutron Source (SNS)

机译:散裂中子源(SNS)上超导直线加速器的调试

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摘要

The use of superconducting radiofrequency (SRF) cavities in particle accelerator is becoming more widespread. Among the projects that make use of that technology is the Spallation Neutron Source, where H-ions are accelerated to about 1 GeV, mostly making use of niobium elliptical cavities. SNS will use the accelerated short (about 700 ns) sub-bunches of protons to generate neutrons by spallation, which will in turn allow probing structural and magnetic properties of new and existing materials. The SNS superconducting linac is the largest application of RF superconductivity to come on-line in the last decade. The SRF cavities, operated at 805 MHz, were designed, built and integrated into cryomodules at Jefferson Lab and installed and tested at SNS. SNS is also the first proton-like accelerator which uses SRF cavities in a pulse mode. Many of the details of the cavity performance are peculiar to this mode of operation, which is also being applied to lepton accelerators (TESLA Test Facility and X-FEL at DESY and the International Linear Collider Project). Thanks to the low frequency of the SNS superconducting cavities, operation at 4.2 K has been possible without beam energy degradation, even though the cavities and cryogenic systems were originally designed for 2.1 K operation. The testing of the superconducting cavities, the operating experience with beam and the performance of the superconducting linac will be presented.
机译:在粒子加速器中使用超导射频(SRF)腔变得越来越普遍。在利用该技术的项目中,有“散裂中子源”,其中氢离子被加速到大约1 GeV,主要是利用铌的椭圆形腔。 SNS将使用加速的短质子子束(约700 ns)通过散裂来产生中子,这反过来又可以探测新材料和现有材料的结构和磁性。 SNS超导直线加速器是最近十年上线的最大射频超导应用。工作频率为805 MHz的SRF腔在杰斐逊实验室设计,制造并集成到低温模块中,并在SNS上进行安装和测试。 SNS也是第一个在脉冲模式下使用SRF腔的质子状加速器。腔体性能的许多细节是该操作模式所特有的,该模式也已应用于轻子加速器(DESY的TESLA测试设备和X-FEL以及国际直线对撞机项目)。由于SNS超导腔的频率低,即使腔和低温系统最初设计用于2.1 K操作,也可以在4.2 K下运行而不会降低束能量。将介绍超导腔的测试,束的操作经验以及超导直线加速器的性能。

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