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Steering is an essential feature of non-locality in quantum theory

机译:转向是量子理论中非局部性的基本特征

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摘要

A physical theory is called non-local when observers can produce instantaneous effects over distant systems. Non-local theories rely on two fundamental effects: local uncertainty relations and steering of physical states at a distance. In quantum mechanics, the former one dominates the other in a well-known class of non-local games known as XOR games. In particular, optimal quantum strategies for XOR games are completely determined by the uncertainty principle alone. This breakthrough result has yielded the fundamental open question whether optimal quantum strategies are always restricted by local uncertainty principles, with entanglement-based steering playing no role. In this work, we provide a negative answer to the question, showing that both steering and uncertainty relations play a fundamental role in determining optimal quantum strategies for non-local games. Our theoretical findings are supported by an experimental implementation with entangled photons.
机译:当观察者可以在遥远的系统上产生瞬时效应时,物理理论被称为非局部理论。非局部理论依赖于两个基本影响:局部不确定性关系和远处的物理状态控制。在量子力学中,前者在另一类众所周知的非本地游戏(即XOR游戏)中占主导地位。特别是,XOR游戏的最佳量子策略完全由不确定性原理完全决定。这一突破性结果提出了一个根本性的悬而未决的问题,即最佳量子策略是否始终受到局部不确定性原理的限制,而基于纠缠的控制则不起作用。在这项工作中,我们对这个问题提供了否定的答案,表明转向关系和不确定性关系在确定非本地游戏的最佳量子策略中起着根本性的作用。我们的理论发现得到了纠缠光子实验的支持。

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