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Experimental simultaneous readout of the real and imaginary parts of the weak value

机译:实验同时读出弱价值的真实和虚部

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摘要

The weak value, the average result of a weak measurement, has proven useful for probing quantum and classical systems. Examples include amplifying small signals, investigating quantum paradoxes, and elucidating fundamental quantum phenomena such as geometric phase. A key characteristic of the weak value is that it can be complex, in contrast to a standard expectation value. However, typically only either the real or imaginary component of the weak value is determined in a given experimental setup.Weak measurements can be used to, in a sense, simultaneously measure noncommuting observables. This principle was used in the direct measurement of the quantum wave function. However, the wave function’s real and imaginary components, given by a weak value, are determined in different setups or on separate ensembles of systems, putting the procedure’s directness in question. To address these issues, we introduce and experimentally demonstrate a general method to simultaneously read out both components of the weak value in a single experimental apparatus. In particular, we directly measure the polarization state of an ensemble of photons using weak measurement.With our method, each photon contributes to both the real and imaginary parts of the weak-value average. On a fundamental level, this suggests that the full complex weak value is a characteristic of each photon measured.
机译:弱价值,测量弱测量的平均结果已被证明可用于探测量子和古典系统。实例包括扩增小信号,研究量子悖论,并阐明诸如几何相的基本量子现象。与标准期望值相比,弱价值的关键特征是它可以复杂。然而,通常仅任一弱值的实部或虚部在给定的实验setup.Weak测量来确定可以用来,在某种意义上,同时测量非交换可观测量。该原理用于直接测量量子波函数。但是,波函数的实部和虚部,由弱值给出,在不同的设置或系统的单独集合中确定,介绍了该程序的指导性。为了解决这些问题,我们介绍和实验证明了一种通用方法,同时在单个实验装置中读出弱值的两个组件。特别地,我们使用弱测量直接测量光子的集合的偏振状态。在我们的方法中,每个光子都有助于弱价平均值的真实和虚部。在基本级别,这表明全复杂的弱价值是测量每个光子的特征。

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