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Josephson Junction Comparator as a Quantum-Limited Detector for Flux Qubit Readout

机译:约瑟夫森结比较器作为通量量子比特读数的量子限制检测器

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We have applied the Langevin-Heisenberg-Lax formalism for dissipative quantum systems to a balanced Josephson junction comparator operating as a fast, single-shot detector of state of a flux (rf-SQUID) qubit. Earlier experiments and theoretical analysis have shown that such a detector may reach quantum-limited resolution when it measures signal from a high-impedance (current) source. In this work, we have calculated the flux resolution of a detector for a signal source with finite inductive impedance (e.g., a flux qubit) for both an instant switching of the comparator, and for its switching with a realistic SFQ driver. The results show that the flux resolution may be quite high: for typical experimental parameters, the signal-to-noise ratio may be on the order of 10, at 10-ps-scale measurement time. Moreover, the natural energy measure of the resolution, $E_{rm out}$, may be made (within a narrow range of parameters) smaller than $hbar/2$. This situation is similar to the case of continuous flux measurements using SQUIDs. In both cases, a more adequate sensitivity measure requires an account of the fluctuation back-action of the detector on the signal source. In this work we have shown that in the case of single-shot measurements, the back-action effects as characterized by the “information/dephasing” measure, may be brought down to their fundamental limit by at least two methods: coupling quenching and feedback compensation.
机译:我们已经将用于耗散量子系统的Langevin-Heisenberg-Lax形式论应用于平衡的约瑟夫森结比较器,该比较器用作快速单次检测通量(rf-SQUID)量子位的状态。较早的实验和理论分析表明,这种检测器在测量来自高阻抗(电流)源的信号时可能达到量子限制的分辨率。在这项工作中,我们为比较器的即时切换以及使用实际SFQ驱动器的切换计算了具有有限电感阻抗(例如,通量qubit)的信号源的检测器的通量分辨率。结果表明,通量分辨率可能很高:对于典型的实验参数,在10 ps标度的测量时间,信噪比可能约为10。此外,分辨率的自然能度量$ E_ {rm out} $可以(在狭窄的参数范围内)小于$ hbar / 2 $。这种情况类似于使用SQUID进行连续磁通量测量的情况。在这两种情况下,更充分的灵敏度测量都需要考虑检测器在信号源上的波动反作用。在这项工作中,我们表明,在单次测量的情况下,以“信息/相移”测量为特征的后向效应可以通过至少两种方法降低到其基本极限:耦合淬灭和反馈赔偿。

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