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重新审视量子因果结构的动力学——因果顺序何时演变?

Revisiting Dynamics of Quantum Causal Structures-When Causal Order Evolve?

作者信息

Selby John H, Sainz Ana Belén, Horodecki Paweł

机构信息

International Centre for Theory of Quantum Technologies, University of Gdańsk, Jana Bażyńskiego 1a, 80-309 Gdańsk, Poland.

出版信息

Entropy (Basel). 2024 Jul 29;26(8):643. doi: 10.3390/e26080643.

Abstract

Recently, there has been substantial interest in studying the dynamics of quantum theory beyond that of states, in particular, the dynamics of channels, measurements, and higher-order transformations. Castro-Ruiz et al. pursues this using the process-matrix formalism, together with a definition of the possible dynamics of such process matrices, and focusing especially on the question of evolution of causal structures. One of its major conclusions is a strong theorem saying that within the formalism, under continuous and reversible transformations, the causal order between operations must be preserved. Our result here challenges that of Castro-Ruiz et al.: if one is to take into account a full picture of the physical evolution of operations within the standard quantum-mechanical formalism, then the conclusion of Castro-Ruiz et al. does not hold. That is, we show that under certain continuous and reversible dynamics, the causal order between operations is not necessarily preserved. We moreover identify and analyse the root of this apparent contradiction, specifically, that the commonly accepted and widely applied framework of higher-order processes, whilst mathematically sound, is not always appropriate for drawing conclusions on physical dynamics. Finally, we show how to reconcile the elements of the whole picture following the intuition based on entanglement processing by local operations and classical communication.

摘要

最近,人们对研究超越态动力学的量子理论动力学产生了浓厚兴趣,特别是信道、测量和高阶变换的动力学。卡斯特罗 - 鲁伊斯等人使用过程矩阵形式体系来进行研究,同时给出了此类过程矩阵可能的动力学定义,并特别关注因果结构的演化问题。其主要结论之一是一个强有力的定理,即在该形式体系内,在连续且可逆的变换下,操作之间的因果顺序必须得以保留。我们在此的结果对卡斯特罗 - 鲁伊斯等人的结果提出了挑战:如果要在标准量子力学形式体系内考虑操作物理演化的全貌,那么卡斯特罗 - 鲁伊斯等人的结论就不成立。也就是说,我们表明在某些连续且可逆的动力学下,操作之间的因果顺序不一定会被保留。此外,我们找出并分析了这一明显矛盾的根源,具体而言,即普遍接受且广泛应用的高阶过程框架,虽然在数学上是合理的,但并不总是适合用于得出关于物理动力学的结论。最后,我们展示了如何依据基于局部操作和经典通信的纠缠处理的直觉来协调整个图景中的各个要素。

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