在三个可观察变量的因果结构中见证非经典性

IF 9.3 Q1 PHYSICS, APPLIED PRX quantum : a Physical Review journal Pub Date : 2022-11-23 DOI:10.1103/PRXQuantum.4.020311
Pedro Lauand, D. Poderini, R. Nery, George Moreno, Lucas Pollyceno, R. Rabelo, R. Chaves
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引用次数: 1

摘要

从现代因果推理的角度来看,贝尔定理只不过是证明一个特定的经典因果模型不能解释量子相关性。因此,超越贝尔的范式情景,考虑不同的因果结构是很自然的。对于三个可观测变量的具体情况,已知存在三个非平凡因果网络。其中两种,已知会产生量子非经典性:工具和三角形场景。在这里,我们分析第三种,也是剩下的一种,我们称之为埃文斯情景,类似于纠缠交换实验的因果结构。我们证明了一些关于这个难以捉摸的场景的结果,并引入了新的和有效的计算工具来分析它,也可以适应于处理更一般的因果结构。我们没有解决它的主要开放问题——量子非经典相关性是否可以由此产生——但在这个方向上迈出了重要的一步,证明了后量子相关性,类似于典型的波普斯库-罗利希盒子,确实违反了埃文斯因果结构的经典描述所施加的约束。
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Witnessing Nonclassicality in a Causal Structure with Three Observable Variables
Seen from the modern lens of causal inference, Bell's theorem is nothing else than the proof that a specific classical causal model cannot explain quantum correlations. It is thus natural to move beyond Bell's paradigmatic scenario and consider different causal structures. For the specific case of three observable variables, it is known that there are three non-trivial causal networks. Two of those, are known to give rise to quantum non-classicality: the instrumental and the triangle scenarios. Here we analyze the third and remaining one, which we name the Evans scenario, akin to the causal structure underlying the entanglement-swapping experiment. We prove a number of results about this elusive scenario and introduce new and efficient computational tools for its analysis that also can be adapted to deal with more general causal structures. We do not solve its main open problem -- whether quantum non-classical correlations can arise from it -- but give a significant step in this direction by proving that post-quantum correlations, analogous to the paradigmatic Popescu-Rohrlich box, do violate the constraints imposed by a classical description of Evans causal structure.
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