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New Method for Determining the Quality Factor and Resonance Frequency of Superconducting Micro-Resonators from Sonnet Simulations

机译:十四行诗模拟确定超导微谐振器品质因数和谐振频率的新方法

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摘要

Lithographed superconducting microwave resonators (micro-resonators) are useful in a number of important applications, including microwave kinetic inductance detectors (Day et al., Nature 425:817, 2003), as memory elements in quantum information circuits, and as readouts of qubits and nanomechanical resonators. One of the major tasks in designing these devices is to find the resonance frequency (f_r) and quality factor (Q) for these microwave circuits using EM simulation software such as Sonnet. The traditional method iteratively runs simulations over successively smaller frequency ranges. In this way the simulated transmission S_(21) data is zoomed in on to yield a well-sampled resonance curve of a circuit. Designing microwave resonators in this manner is often time consuming since it requires many simulation runs. In this work, we show a new--and much faster--method for determining f_r and Q by adding an internal (virtual) port in the Sonnet model and examining the input impedance through the added port. Accurate f_r and Q values can be retrieved from a single simulation with a wide frequency sweep. This method works on many types of resonance circuits and dramatically reduces the simulation time.
机译:光刻的超导微波谐振器(微谐振器)在许多重要应用中有用,包括微波动电感检测器(Day等人,Nature 425:817,2003),量子信息电路中的存储元件以及量子位的读数和纳米机械谐振器。设计这些设备的主要任务之一是使用诸如Sonnet之类的EM仿真软件找到这些微波电路的谐振频率(f_r)和品质因数(Q)。传统方法在连续较小的频率范围内迭代运行仿真。以这种方式,将模拟的传输S_(21)数据放大以产生电路的良好采样的谐振曲线。以这种方式设计微波谐振器通常很耗时,因为它需要进行多次仿真。在这项工作中,我们通过在Sonnet模型中添加内部(虚拟)端口并检查通过添加的端口的输入阻抗,展示了一种用于确定f_r和Q的新方法,该方法速度更快。准确的f_r和Q值可以通过宽频率扫描的单个模拟获得。这种方法适用于多种类型的谐振电路,并大大减少了仿真时间。

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