English

Anomalous Microwave Response in YBCO Resonators beyond the Two-Level-System Model

Superconductivity 2026-07-29 v1 Mesoscale and Nanoscale Physics Quantum Physics

Abstract

We report the microwave response of coplanar-waveguide (CPW) resonators fabricated from YBa2Cu3O7δ\mathrm{YBa_2Cu_3O_{7-\delta}} (YBCO) thin films over temperatures from approximately 70 mK70~\mathrm{mK} to 40 K40~\mathrm{K}. The resonators exhibit internal quality factors QiQ_\mathrm{i} in the range of 4×1034\times10^3 to 10410^4 at 70 mK, which increase to a maximum of approximately 8×1038\times10^3 to 1.2×1041.2\times10^4 near 6 K6~\mathrm{K}. At low temperatures, both QiQ_\mathrm{i} and the fractional shift of the resonance frequency Δfr/fr\Delta f_\mathrm{r}/f_\mathrm{r} increases with temperature, qualitatively resembling behavior commonly associated with two-level-system (TLS) defects. However, neither response saturates on the temperature scale set by the resonator frequency, and the loss exhibits no observable microwave-power dependence. We show that low-temperature frequency upturn may be better described by an additional paramagnetic response associated with defect-induced local moments or Andreev bound states, while the low-temperature loss follows an approximately logarithmic temperature dependence whose microscopic origin remains unresolved. These measurements establish the millikelvin performance of patterned YBCO resonators and show that their low-temperature response cannot be understood within the conventional TLS framework alone.

Cite

@article{arxiv.2607.27392,
  title  = {Anomalous Microwave Response in YBCO Resonators beyond the Two-Level-System Model},
  author = {Kaiwen Zheng and Nathan J. Johnson and Nathan T. Thobaben and Sidharth Duthaluru and Haochen Shen and Denae T. Cherry and David S. Wisbey and Kater W. Murch},
  journal= {arXiv preprint arXiv:2607.27392},
  year   = {2026}
}

Comments

8 pages, 5 figures