首页> 外文会议>NATO Advanced Research Workshop on Modality, Probability, and Bell's Theorems Aug 19-23, 2001 Cracow, Poland >SIGNAL-LOCALITY AND SUBQUANTUM INFORMATION IN DETERMINISTIC HIDDEN-VARIABLES THEORIES
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SIGNAL-LOCALITY AND SUBQUANTUM INFORMATION IN DETERMINISTIC HIDDEN-VARIABLES THEORIES

机译:确定性隐藏变量理论中的信号局部性和子群信息

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It is proven that any deterministic hidden-variables theory, that reproduces quantum theory for a 'quantum equilibrium' distribution of hidden variables, must predict the existence of instantaneous signals at the statistical level for hypothetical 'nonequilibrium ensembles'. This 'signal-locality theorem' generalises yet another feature of the pilot-wave theory of de Broglie and Bohm, for which it is already known that signal-locality is true only in equilibrium. Assuming certain symmetries, lower bounds are derived on the 'degree of nonlocality' of the singlet state, defined as the (equilibrium) fraction of outcomes at one wing of an EPR-experiment that change in response to a shift in the distant angular setting. It is shown by explicit calculation that these bounds are satisfied by pilot-wave theory. The degree of nonlocality is interpreted as the average number of bits of 'subquantum information' transmitted superluminally, for an equilibrium ensemble. It is proposed that this quantity might provide a novel measure of the entanglement of a quantum state, and that the field of quantum information would benefit from a more explicit hidden-variables approach. It is argued that the signal-locality theorem supports the hypothesis, made elsewhere, that in the remote past the universe relaxed to a state of statistical equilibrium at the hidden-variable level, a state in which nonlocality happens to be masked by quantum noise.
机译:事实证明,任何复制隐含变量“量子平衡”分布的量子理论的确定性隐含变量理论都必须在假设的“非平衡集合”的统计水平上预测瞬时信号的存在。这个“信号局部性定理”概括了德布罗意和波姆的导波理论的另一个特点,为此,众所周知,信号局部性仅在平衡时才是正确的。假设某些对称性,则根据单峰态的“非局域度”得出下限,单态的下界度定义为EPR实验的一侧翼的结果的(平衡)分数,该分数随远角设置的变化而变化。通过显式计算表明,导波理论满足了这些界限。对于平衡系综,非局部性的程度被解释为超发光传输的“亚量子信息”的平均位数。有人提出,该量可能提供一种量子态纠缠的新方法,并且量子信息领域将从更明确的隐藏变量方法中受益。有人认为,信号局部性定理支持在其他地方提出的假设,即在遥远的过去,宇宙在隐藏变量水平上放松到统计平衡状态,这种状态中非局部性恰好被量子噪声掩盖。

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