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Probing quantumness with joint continuous measurements of noncommuting qubit observables

机译:用非换位量子位联合观测连续测量量子

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摘要

We analyze the continuous measurement of two noncommuting observables for a qubit, and investigate whether the simultaneously observed noisy signals are consistent with the evolution of an equivalent classical system. Following the approach outlined by Leggett and Garg, we show that the readouts violate macrorealistic inequalities for arbitrarily short temporal correlations. Moreover, the derived inequalities are manifestly violated even in the absence of Hamiltonian evolution, unlike for Leggett-Garg inequalities that use a single continuous measurement. Such a violation should indicate the failure of at least one postulate of macrorealism: either physical quantities do not have well-defined values at all times or the measurement process itself disturbs what is being measured. Nevertheless, for measurements of equal strength we are able to construct a classical stochastic model for a spin that perfectly emulates both the qubit evolution and the observed noisy signals, thus emulating the violations; interestingly, this model also requires an unphysical noise to emulate the readouts, which effectively restricts the ability of an observer to learn information about the spin.
机译:我们分析了一个量子位的两个不可交换观测值的连续测量,并研究了同时观测到的噪声信号是否与等效经典系统的演化一致。遵循Leggett和Garg概述的方法,我们表明,对于任意短的时间相关性,读数违反了宏观现实的不等式。此外,与使用单个连续测量的莱格特-盖尔格不等式不同,即使在没有汉密尔顿演化的情况下,也明显违反了导出的不等式。这种违反应表明至少有一个宏观现实的假设失败:物理量在任何时候都没有明确定义的值,或者测量过程本身干扰了所测量的内容。然而,对于相等强度的测量,我们能够为自旋构建经典的随机模型,该模型完美地模拟了量子位的演化和观察到的噪声信号,从而模拟了违规现象。有趣的是,该模型还需要非自然的噪声来模拟读数,这实际上限制了观察者学习有关自旋信息的能力。

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