Scholay

学术搜索 · AI 审稿 · LaTeX 协作

An analysis method for transmission measurements of superconducting resonators with applications to quantum-regime dielectric-loss measurements

作者:Chunqing Deng, Martin R. Otto, Adrian Lupaşcu · 发表于:Journal of Applied Physics · 年份:2013 · DOI:10.1063/1.4817512 · 被引用次数:25 · 研究领域:Physics of Superconductivity and Magnetism、Superconducting and THz Device Technology、Quantum and electron transport phenomena

Superconducting resonators provide a convenient way to measure loss tangents of various dielectrics at low temperature. For the purpose of examining the microscopic loss mechanisms in dielectrics, precise measurements of the internal quality factor at different values of energy stored in the resonators are required. Here, we present a consistent method to analyze a LC superconducting resonator coupled to a transmission line. We first derive an approximate expression for the transmission S-parameter S21(ω), with ω the excitation frequency, based on a complete circuit model. In the weak coupling limit, we show that the internal quality factor is reliably determined by fitting the approximate form of S21(ω). Since the voltage V of the capacitor of the LC circuit is required to determine the energy stored in the resonator, we next calculate the relation between V and the forward propagating wave voltage Vin+, with the latter being the parameter controlled in experiments. Due to the dependence of the quality factor on voltage, V is not simply proportional to Vin+. We find a self-consistent way to determine the relation between V and Vin+, which employs only the fitting parameters for S21(ω) and a linear scaling factor. We then examine the resonator transmission in the cases of port reflection and impedance mismatch. We find that resonator transmission asymmetry is primarily due to the reflection from discontinuity in transmission lines. We show that our analysis method to extract ...