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Experimental verification of an indefinite causal order

机译:不确定因果顺序的实验验证

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Investigating the role of causal order in quantum mechanics has recently revealed that the causal relations of events may not be a priori well defined in quantum theory. Although this has triggered a growing interest on the theoretical side, creating processes without a causal order is an experimental task. We report the first decisive demonstration of a process with an indefinite causal order. To do this, we quantify how incompatible our setup is with a definite causal order by measuring a “causal witness.” This mathematical object incorporates a series of measurements that are designed to yield a certain outcome only if the process under examination is not consistent with any well-defined causal order. In our experiment, we perform a measurement in a superposition of causal orders—without destroying the coherence—to acquire information both inside and outside of a “causally nonordered process.” Using this information, we experimentally determine a causal witness, demonstrating by almost 7 SDs that the experimentally implemented process does not have a definite causal order.
机译:研究因果顺序在量子力学中的作用,最近发现,事件的因果关系在量子理论中可能不是先验定义的。尽管这在理论上引起了越来越多的兴趣,但是创建没有因果关系的过程是一项实验性的任务。我们报告了具有不确定因果顺序的过程的第一个决定性证明。为此,我们通过测量“因果证人”来量化设置与确定的因果顺序之间的不兼容性。该数学对象包含一系列旨在仅在所检查的过程与任何明确定义的因果顺序不一致的情况下才能产生特定结果的度量。在我们的实验中,我们以因果顺序的叠加进行测量(而不会破坏一致性),以获取“因果无序过程”内部和外部的信息。利用这些信息,我们通过实验确定了因果关系的见证人,并通过将近7个SD证明了实验实施的过程没有明确的因果关系。

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