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Exploiting Kerr cross nonlinearity in circuit quantum electrodynamics for nondemolition measurements

机译:在电路量子电动力学中利用Kerr交叉非线性进行非爆破​​测量

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摘要

We propose a scheme for dispersive readout of stored energy in one mode of a nonlinear-superconducting microwave ring resonator by detection of the frequency shift of a second mode coupled to the first via a Kerr nonlinearity. Symmetry is used to enhance the device responsivity while minimizing self-nonlinearity of each mode. Assessment of the signal to noise ratio indicates that the scheme will function at the single-photon level, allowing quantum nondemolition measurement of the photon-number state of one mode. Experimental data from a simplified version of the device demonstrating the principle of operation are presented.
机译:我们提出了一种通过检测通过Kerr非线性耦合到第一种模式的第二种模式的频移,在非线性超导微波环形谐振器的一种模式中分散读出存储的能量的方案。对称用于增强设备的响应能力,同时最小化每个模式的自非线性。对信噪比的评估表明,该方案将在单光子级起作用,从而允许对一种模式的光子数状态进行量子非拆卸测量。展示了来自该设备简化版本的实验数据,展示了其工作原理。

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