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Effect of low-temperature baking on the radio-frequency properties of niobium superconducting cavities for particle accelerators

机译:低温烘烤对粒子加速器铌超导腔射频特性的影响

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摘要

Radio-frequency superconducting (SRF) cavities are widely used to accelerate a charged particle beam in particle accelerators. The performance of SRF cavities made of bulk niobium has significantly improved over the last ten years and is approaching the theoretical limit for niobium. Nevertheless, RF tests of niobium cavities are still showing some "anomalous" losses that require a better understanding in order to reliably obtain better performance. These losses are characterized by a marked dependence of the surface resistance on the surface electromagnetic field and can be detected by measuring the quality factor of the resonator as a function of the peak surface field. A low-temperature (100-150degreesC) "in situ" bake under ultrahigh vacuum has been successfully applied as final preparation of niobium RF cavities by several laboratories over the last few years. The benefits reported consist mainly of an improvement of the cavity quality factor at low field and a recovery from "anomalous" losses (so-called "Q drop") without field emission at higher field. A series of experiments with a CEBAF single-cell cavity have been carried out at Jefferson Lab to carefully investigate the effect of baking at progressively higher temperatures for a fixed time on all the relevant material parameters. Measurements of the cavity quality factor in the temperature range 1.37-280 K and resonant frequency shift between 6-9.3 K provide information about the surface resistance, energy gap, penetration depth, and mean free path. The experimental data have been analyzed with the complete BCS theory of superconductivity. The hydrogen content of small niobium samples inserted in the cavity during its surface preparation was analyzed with nuclear reaction analysis. The single-cell cavity has been tested at three different temperatures before and after baking to gain some insight on thermal conductivity and Kapitza resistance and the data are compared with different models. This paper describes the results of these experiments and comments on existing models to explain the effect of baking on the performance of niobium RF cavities. (C) 2004 American Institute of Physics.
机译:射频超导(SRF)腔体被广泛用于在粒子加速器中加速带电粒子束。在过去的十年中,由散装铌制成的SRF腔的性能有了显着提高,并且已接近铌的理论极限。尽管如此,铌腔的射频测试仍显示出一些“异常”的损耗,需要对其进行更好的理解才能可靠地获得更好的性能。这些损耗的特征在于表面电阻对表面电磁场的显着依赖性,可以通过测量谐振器的品质因数作为峰值表面场的函数来检测这些损耗。在过去的几年中,已经通过数个实验室成功地将低温(100-150℃)的超高真空“原位”烘烤用作铌RF腔的最终制备。所报告的好处主要包括在低场时改善腔质量因数,以及从“异常”损耗(所谓的“ Q下降”)中恢复,而在高场中没有场发射。杰斐逊实验室已进行了一系列带有CEBAF单细胞腔的实验,以仔细研究在固定的时间内逐步升高的温度下烘烤对所有相关材料参数的影响。在1.37-280 K的温度范围内对谐振腔品质因数的测量以及在6-9.3 K之间的谐振频移提供了有关表面电阻,能隙,穿透深度和平均自由程的信息。实验数据已经用完整的BCS超导理论进行了分析。用核反应分析法分析了在腔体表面制备过程中插入腔中的小铌样品的氢含量。在烘烤前后,已经在三种不同的温度下对单细胞腔进行了测试,以了解热导率和Kapitza电阻,并将数据与不同模型进行比较。本文介绍了这些实验的结果,并对现有模型进行了评论,以解释烘烤对铌射频腔性能的影响。 (C)2004美国物理研究所。

著录项

  • 来源
    《Journal of Applied Physics》 |2004年第3期|p. 1591-1600|共10页
  • 作者

    Ciovati G;

  • 作者单位

    Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23609 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用物理学;
  • 关键词

    SURFACE-RESISTANCE;

    机译:表面电阻;

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