Nonlinear Charge- and Flux-Tunable Cavity Derived From an Embedded Cooper-Pair Transistor

B. L. Brock, Juliang Li, S. Kanhirathingal, B. Thyagarajan, W. Braasch, Miles Blencowe, A. Rimberg
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引用次数: 8

Abstract

We introduce the cavity-embedded Cooper pair transistor (cCPT), a device which behaves as a highly nonlinear microwave cavity whose resonant frequency can be tuned both by charging a gate capacitor and by threading flux through a SQUID loop. We characterize this device and find excellent agreement between theory and experiment. A key difficulty in this characterization is the presence of frequency fluctuations comparable in scale to the cavity linewidth, which deform our measured resonance circles in accordance with recent theoretical predictions [B. L. Brock et al., Phys. Rev. Applied (to be published), arXiv:1906.11989]. By measuring the power spectral density of these frequency fluctuations at carefully chosen points in parameter space, we find that they are primarily a result of the $1/f$ charge and flux noise common in solid state devices. Notably, we also observe key signatures of frequency fluctuations induced by quantum fluctuations in the cavity field via the Kerr nonlinearity.
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基于嵌入式铜对晶体管的非线性电荷和磁通可调谐腔
本文介绍了一种嵌入腔的库珀对晶体管(cCPT),它是一种高度非线性的微波腔,其谐振频率可以通过对栅极电容器充电和通过SQUID回路的磁通来调谐。我们对这种装置进行了表征,发现理论与实验非常吻合。这种表征的一个关键困难是存在与腔线宽相当的频率波动,这使我们测量的共振圆变形,与最近的理论预测一致[B]。L. Brock等人,物理学。[j].应用(待出版),第14期:1906 - 1989。通过在参数空间中精心选择的点测量这些频率波动的功率谱密度,我们发现它们主要是固态器件中常见的$1/f$电荷和通量噪声的结果。值得注意的是,我们还通过Kerr非线性观察到腔场中量子涨落引起的频率波动的关键特征。
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