论文标题

无序超导射频腔的频移和Q

The Frequency Shift and Q of Disordered Superconducting RF Cavities

论文作者

Ueki, Hikaru, Zarea, Mehdi, Sauls, J. A.

论文摘要

用于高能加速器应用的Niobium超导射频(SRF)腔已通过氮掺杂等技术的质量因子$ Q $而大大提高。但是,$ Q $的领先改善的机制仍未完全了解。最近,费米拉布(Fermilab)的SRF组测量了在过渡温度附近的N掺杂SRF Niobium腔的频移中的异常。在这里,我们根据超导性的显微镜理论报告了对这些结果的理论分析,该理论结合了SRF空腔筛选区域中超导间隙和不均匀疾病的各向异性。我们能够计算频率偏移异常非常接近kHz分数订单的$ t_c $。我们对频移和Q的结果与Bafia等人报告的所有四个NB SRF腔的实验数据非常吻合。我们还将我们的理论与以60 GHz测量的NB样本进行的早期报告进行了比较。我们还表明,理论上计算出的质量因子具有上层凸的高峰,最大的$ q $在中级疾病中。对于强烈的障碍,即肮脏的限制,在存在混乱的情况下对破裂和筛选电流限制了$ Q $。

Niobium superconducting radio-frequency (SRF) cavities for high energy accelerator applications have been greatly improved in terms of the quality factor $Q$ by techniques such as Nitrogen doping. However, the mechanisms leading improvement in $Q$ are still not fully understood. Quite recently the SRF group at Fermilab measured anomalies in the frequency shift of N-doped SRF Niobium cavities near the transition temperature. Here we report our theoretical analysis of these results based on the microscopic theory of superconductivity that incorporates anisotropy of the superconducting gap and inhomogeneous disorder in the screening region of the SRF cavities. We are able to account for frequency shift anomalies very close to $T_c$ of the order of fractions of a kHz. Our results for the frequency shift and Q are in good agreement with the experimental data reported for all four N-doped Nb SRF cavities by Bafia et al. We also compare our theory with an earlier report of on a Nb sample measured at 60 GHz. We also show that the quality factor calculated theoretically has a peak of upper convexity with the largest $Q$ at intermediate levels of disorder. For strong disorder, i.e. the dirty limit, pair breaking in the presence of disorder and screening currents limits the $Q$.

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