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Quantum mechanical violation of macrorealism for large spin and its robustness against coarse-grained measurements

机译:大自旋的量子力学违反宏观现实性及其对粗粒度测量的鲁棒性

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摘要

For multilevel spin systems, robustness of the quantum mechanical (QM) violation of macrorealism (MR) with respect to coarse-grained measurements is investigated using three different necessary conditions of MR, namely, the Leggett-Garg inequality (LGI), Wigner's form of the Leggett-Garg inequality (WLGI), and the condition of no-signaling in time (NSIT). It is shown that for dichotomic sharp measurements, in the asymptotic limit of spin, the algebraic maxima of the QM violations of all these three necessary conditions of MR are attained. Importantly, the QM violations of all these persist in that limit even for arbitrary unsharp measurements, i.e., for any nonzero value of the sharpness parameter characterizing the degree of fuzziness of the relevant measurements. We also find that, when different measurement outcomes are clubbed into two groups for the sake of dichotomizing the outcomes, the asymmetry or symmetry in the number of outcomes in the two groups, signifying the degree of coarse graining of measurements, has a crucial role in discerning quantum violation of MR. The results clearly demonstrate that classicality does not emerge in the asymptotic limit of spin, whatever be the unsharpness and degree of coarse graining of the measurements.
机译:对于多级自旋系统,使用三个不同的必要MR条件,即Leggett-Garg不等式(LGI),Wigner形式的MR,研究了量子力学(QM)违反宏观现实(MR)相对于粗粒度测量的鲁棒性。 Leggett-Garg不等式(WLGI),以及无信号及时发送的条件(NSIT)。结果表明,对于二分法锐利测量,在自旋的渐近极限中,获得了所有这三个必要的MR条件的QM违反的QM的代数最大值。重要的是,即使对于任意不清晰的测量,即对于表征相关测量的模糊度的任何非零值的清晰度参数,对所有这些的QM违反仍然存在于该限制中。我们还发现,将不同的测量结果分成两类以将结果分为两类时,两组中结果数量的不对称性或对称性表明测量的粗粒度程度在以下方面起着至关重要的作用:辨别MR的量子违规。结果清楚地表明,无论测量值的不锐度和粗糙程度如何,古典性都不会出现在自旋的渐近极限内。

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