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Temporal self-similarity of quantum dynamical maps as a concept of memorylessness

机译:量子动态地图的时间自我相似性作为记忆的概念

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The problem of defining quantum non-Markovianity has proven elusive, with various in-equivalent criteria put forth to address it. The concept of CP-indivisibility and the hierarchy of stronger divisibility criteria going up to P-indivisibility, capture a fundamental aspect of memory in quantum non-Markovianity. In practice, however, there can be a memory-like influence associated with divisible channels in the form of weakening, if not reversing, the effects of decoherence. Arguably, such a facet of memory relates to CP-indivisibility as quantum discord relates to entanglement. We concretize this weaker notion of non-Markovianity by identifying it with deviation from “temporal self-similarity”, the property of a system dynamics whereby the propagator between two intermediate states is independent of the initial time $$t_0$$ . We illustrate this idea through examples, and propose a geometric quantification of temporal self-similarity, and show how our approach complements the divisibility-based criterion of quantum non-Markovianity.
机译:定义量子非市场性的问题已被证明是难以捉摸的,以解决各种相同的标准。 CP-IndiSibility的概念和更强的可分性标准的等级达到P-Indivisibity,捕获量子非市场中记忆的基本方面。然而,在实践中,如果没有逆转,可以存在与可削弱的形式相关的内存相似的影响,如果没有逆转,则逆转。可以说明,随着量子不和谐涉及缠结,该存储器的这种方面涉及CP-Indiabity。我们通过识别与“时间自相似性”识别,系统动态的属性将其混凝化这一较弱的非市场概念,其中两个中间状态之间的传播者独立于初始时间$$ T_0 $$。我们通过示例说明了这个思想,并提出了时间自相似性的几何量化,并展示了我们的方法如何补充量子非市场性的基于可分性的标准。

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