论文标题
用于前所未有的参数空间中基本SRF研究的同轴多模式腔
Coaxial multi-mode cavities for fundamental SRF research in an unprecedented parameter space
论文作者
论文摘要
超导射频(SRF)研究的最新发展主要集中在电子加速器的高频椭圆腔。通过使用新型的SRF腔处理方法,包括表面处理,自定义热处理和磁通量驱逐,可以降低RF表面电阻和推动易于实现的加速梯度的进步。尽管全球对基于SRF的强子加速器的需求,但TEM模式腔的进步仍落后。为了解决这个问题,已经设计和构建了两个专用的研究腔,即四分之一波和一个半波谐振器,以允许对具有标准和新型表面处理的Tem-Mode腔体进行表征。这些腔的目的是相当于1.3GHz单细胞腔的TEM模式,这是高频腔研究的重要工具。鉴于它们的同轴结构,腔体允许在基本模式和更高的谐波下进行测试,从而对RF频率在固有和外在来源的基本损失机制中的作用具有独特的见解。在本文中,描述了空腔和测试基础设施,并提出了两个空腔的第一个性能测量。
Recent developments in superconducting radio-frequency (SRF) research have focused primarily on high frequency elliptical cavities for electron accelerators. Advances have been made in both reducing RF surface resistance and pushing the readily achievable accelerating gradient by using novel SRF cavity treatments including surface processing, custom heat treatments, and flux expulsion. Despite the global demand for SRF based hadron accelerators, the advancement of TEM mode cavities has lagged behind. To address this, two purpose-built research cavities, one quarter-wave and one half-wave resonator, have been designed and built to allow characterization of TEM-mode cavities with standard and novel surface treatments. The cavities are intended as the TEM mode equivalent to the 1.3GHz single cell cavity, which is the essential tool for high frequency cavity research. Given their coaxial structure, the cavities allow testing at the fundamental mode and higher harmonics, giving unique insight into the role of RF frequency on fundamental loss mechanisms from intrinsic and extrinsic sources. In this paper, the cavities and testing infrastructure are described and the first performance measurements of both cavities are presented.