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Research PaperResearchia:202609.23055

Evidence for a low-gap component in compressively stressed niobium thin films

J. T. Paustian

Abstract

We investigate the microwave response of sputtered Nb films as a function of biaxial film stress. Although transport measurements show nearly identical superconducting transition temperatures ($9.0\pm 0.2$K) and residual resistance ratios across the stress series, microwave resonators fabricated from highly compressive films exhibit enhanced temperature-dependent loss and larger frequency shifts. A conventional single-phase Mattis--Bardeen description yields an effective critical temperature of ...

Submitted: September 23, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

We investigate the microwave response of sputtered Nb films as a function of biaxial film stress. Although transport measurements show nearly identical superconducting transition temperatures (9.0±0.29.0\pm 0.2K) and residual resistance ratios across the stress series, microwave resonators fabricated from highly compressive films exhibit enhanced temperature-dependent loss and larger frequency shifts. A conventional single-phase Mattis--Bardeen description yields an effective critical temperature of 2.4±0.22.4\pm0.2K, approximately a factor of four below the value obtained from transport measurements. We show that the data are instead consistent with the presence of an additional low-gap component whose contribution increases with compressive stress. These results show that conventional transport measurements can overlook stress-dependent low-energy excitations that strongly influence microwave performance.


Source: arXiv:2609.26714v1 - http://arxiv.org/abs/2609.26714v1 PDF: https://arxiv.org/pdf/2609.26714v1 Original Link: http://arxiv.org/abs/2609.26714v1

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Date:
Sep 23, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
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