On the classicality of quantum dephasing processes

Davide Lonigro, D. Chru'sci'nski
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引用次数: 3

Abstract

We analyze the multitime statistics associated with pure dephasing systems repeatedly probed with sharp measurements, and search for measurement protocols whose statistics satisfy the Kolmogorov consistency conditions possibly up to a finite order. We find a rich phenomenology of quantum dephasing processes which can be interpreted in classical terms. In particular, if the underlying dephasing process is Markovian, we find sufficient conditions under which classicality at every order can be found: this can be reached by choosing the dephasing and measurement basis to be fully compatible or fully incompatible, that is, mutually unbiased bases (MUBs). For non-Markovian processes, classicality can only be proven in the fully compatible case, thus revealing a key difference between Markovian and non-Markovian pure dephasing processes.
论量子脱相过程的经典性
我们分析了用尖锐测量重复探测纯消相系统的多时间统计量,并寻找其统计量可能满足有限阶Kolmogorov一致性条件的测量协议。我们发现量子失相过程的丰富现象学可以用经典术语来解释。特别是,如果底层的减相过程是马尔可夫的,我们找到了在每一阶都能找到经典性的充分条件:这可以通过选择减相和测量基完全相容或完全不相容来实现,即互无偏基(mub)。对于非马尔可夫过程,经典性只能在完全相容的情况下得到证明,从而揭示了马尔可夫过程与非马尔可夫纯减相过程的关键区别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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