论文标题

基于量子相关测量的经典无噪声感测

Classical-noise-free sensing based on quantum correlation measurement

论文作者

Wang, Ping, Chen, Chong, Liu, Renbao

论文摘要

使用传感器的量子性能,量子传感可以增强成像,光谱和检测的分辨率,精度和灵敏度。一个有趣的问题是:传感器和目标的量子性质(量子)是否可以利用为实现经典探针或经典目标不可能的方案?在这里,我们表明量子目标的量子相关性的测量确实可以传达没有经典对应物的方案。作为一个具体的例子,如果可以通过非平稳的经典噪声完全掩盖量子目标的二阶经典相关性,则高阶量子相关性可以从经典噪声背景中挑选出一个量子目标,而与噪声的频谱,统计数据或噪声强度无关。因此,提出了一种经典的无噪声感应方案。这一发现表明,仍将探索传感器和目标的量子性,以实现量子传感的全部潜力。新的机会包括超越经典方法的敏感性,非古典相关性作为量子多体物理学的新方法,量子基础的无漏洞测试等。

Quantum sensing, using quantum properties of sensors, can enhance resolution, precision, and sensitivity of imaging, spectroscopy, and detection. An intriguing question is: Can the quantum nature (quantumness) of sensors and targets be exploited to enable schemes that are not possible for classical probes or classical targets? Here we show that measurement of the quantum correlations of a quantum target indeed allows for sensing schemes that have no classical counterparts. As a concrete example, in case where the second-order classical correlation of a quantum target could be totally concealed by non-stationary classical noise, the higher-order quantum correlations can single out a quantum target from the classical noise background, regardless of the spectrum, statistics, or intensity of the noise. Hence a classical-noise-free sensing scheme is proposed. This finding suggests that the quantumness of sensors and targets is still to be explored to realize the full potential of quantum sensing. New opportunities include sensitivity beyond classical approaches, non-classical correlations as a new approach to quantum many-body physics, loophole-free tests of the quantum foundation, et cetera.

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