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量子因果影响的实验测试

Experimental test of quantum causal influences.

作者信息

Agresti Iris, Poderini Davide, Polacchi Beatrice, Miklin Nikolai, Gachechiladze Mariami, Suprano Alessia, Polino Emanuele, Milani Giorgio, Carvacho Gonzalo, Chaves Rafael, Sciarrino Fabio

机构信息

Dipartimento di Fisica, Sapienza Università di Roma, P.le Aldo Moro 5, I-00185 Roma, Italy.

International Centre for Theory of Quantum Technologies (ICTQT), University of Gdansk, 80-308 Gdansk, Poland.

出版信息

Sci Adv. 2022 Feb 25;8(8):eabm1515. doi: 10.1126/sciadv.abm1515.

Abstract

Since Bell's theorem, it is known that local realism fails to explain quantum phenomena. Bell inequality violations manifestly show the incompatibility of quantum theory with classical notions of cause and effect. As recently found, however, the instrumental scenario-a pivotal tool in causal inference-allows for nonclassicality signatures going beyond this paradigm. If we are not limited to observational data and can intervene in our setup, then we can witness quantum violations of classical bounds on the causal influence among the involved variables even when no Bell-like violation is possible. That is, through interventions, the quantum behavior of a system that would seem classical can be demonstrated. Using a photonic setup-faithfully implementing the instrumental causal structure and switching between observation and intervention run by run-we experimentally witness such a nonclassicality. We also test quantum bounds for the causal influence, showing that they provide a reliable tool for quantum causal modeling.

摘要

自贝尔定理提出以来,人们已经知道局域实在论无法解释量子现象。贝尔不等式的违背明显表明了量子理论与经典因果概念的不相容性。然而,最近发现,工具性场景——因果推断中的关键工具——允许存在超越这一范式的非经典性特征。如果我们不限于观测数据,并且能够对实验设置进行干预,那么即使不可能出现类似贝尔的违背情况,我们也能够见证量子对所涉变量之间因果影响的经典界限的违背。也就是说,通过干预,可以证明一个看似经典的系统的量子行为。我们使用一个光子实验装置——忠实地实现工具性因果结构,并逐次在观测和干预之间切换——通过实验见证了这种非经典性。我们还测试了因果影响的量子界限,表明它们为量子因果建模提供了一个可靠的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d14/8880765/b6fcbc83b235/sciadv.abm1515-f1.jpg

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