掺n超导射频腔耗散区的表征

E. Lechner, B. D. Oli, J. Makita, G. Ciovati, A. Gurevich, M. Iavarone
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引用次数: 0

摘要

我们报告了一个氮掺杂Nb超导射频腔的质量因子和温度映射的射频测量。采用低温扫描隧道显微镜和能谱、x射线光电子能谱和二次电子显微镜对冷热点空腔切割进行了研究。温度映射显示,在冷却腔体时,残余阻力大幅减少,淬火位置的温度梯度和滞后损失更大,表明困涡流是残余表面阻力的主要来源。在接近效应理论框架下对隧道光谱的分析表明,热点的对电位降低,Nb与顶部Nb氧化物之间的接触电阻分布更广。单独来看,这些退化的超导特性造成的多余耗散比涡旋的贡献要弱得多。基于准粒子态密度与温度映射之间的相关性,我们认为超导性能的退化可能会促进涡旋成核或在冷却到临界温度时捕获通量的沉降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of dissipative regions of a N-doped superconducting radio-frequency cavity
We report radio-frequency measurements of quality factors and temperature mapping of a nitrogen doped Nb superconducting RF cavity. Cavity cutouts of hot and cold spots were studied with low temperature scanning tunneling microscopy and spectroscopy, X-ray photoelectron spectroscopy and secondary electron microscopy. Temperature mapping revealed a substantial reduction of the residual resistance upon cooling the cavity with a greater temperature gradient and hysteretic losses at the quench location, pointing to trapped vortices as the dominant source of residual surface resistance. Analysis of the tunneling spectra in the framework of a proximity effect theory shows that hot spots have a reduced pair potential and a wider distribution of the contact resistance between the Nb and the top Nb oxide. Alone, these degraded superconducting properties account for a much weaker excess dissipation as compared with the vortex contribution. Based on the correlation between the quasiparticle density of states and temperature mapping, we suggest that degraded superconducting properties may facilitate vortex nucleation or settling of trapped flux during cooling the cavity through the critical temperature.
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