论文标题

目睹未知量子动力学的非目标

Witnessing the non-objectivity of an unknown quantum dynamics

论文作者

Poderini, Davide, Rodari, Giovanni, Moreno, George, Polino, Emanuele, Nery, Ranieri, Suprano, Alessia, Duarte, Cristhiano, Sciarrino, Fabio, Chaves, Rafael

论文摘要

量子达尔文主义为从微观级别的量子特性中的量子特性提供了经典目标特征的出现(我们习惯于在宏观尺度上的出现)提供了解释。量子系统与周围环境的相互作用将信息扩散到了环境的许多部分,将其访问且客观地转移到了不同​​的观察者身上。但是,鉴于人们不能直接探究量子系统,只有其环境,如何见证未知的量子特性是否可以视为客观?在这里,我们提出了一个概率框架来分析这个问题,并表明客观性意味着像钟声一样的不平等。除其他几个结果外,我们还显示了量子违反这种不平等的行为,这是量子相关性的非目标的证明,这引起了我们称其为“集体幻觉”的现象的现象:观察者探测环境的不同部分可以同意其可观察到的结果的测量结果,但可以完全不符合量子的范围。我们还实施了一个有吸引力的光子实验,其中光子的时间自由度是量子系统的量子系统,而它们的两极化则是环境。我们采用了完全黑框的方法,达到了违反铃铛不平等的行为,从而证实了完全独立于设备的框架中基础量子动力学的非目标。

Quantum Darwinism offers an explanation for the emergence of classical objective features -- those we are used to at macroscopic scales -- from quantum properties at the microscopic level. The interaction of a quantum system with its surroundings redundantly proliferates information to many parts of the environment, turning it accessible and objective to different observers. But given that one cannot probe the quantum system directly, only its environment, how to witness whether an unknown quantum property can be deemed objective or not? Here we propose a probabilistic framework to analyze this question and show that objectivity implies a Bell-like inequality. Among several other results, we show quantum violations of this inequality, a device-independent proof of the non-objectivity of quantum correlations that give rise to the phenomenon we name "collective hallucination": observers probing distinct parts of the environment can agree upon their measurement outcome of a given observable but such outcome can be totally uncorrelated from the property of the quantum system that fixed observable should be probing. We also implement an appealing photonic experiment where the temporal degree of freedom of photons is the quantum system of interest, while their polarization acts as the environment. Employing a fully black-box approach, we achieve the violation of a Bell inequality, thus certifying the non-objectivity of the underlying quantum dynamics in a fully device-independent framework.

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