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A mechanism for instantaneous transfers between entangled entities

机译:纠缠实体之间即时转移的机制

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Quantum entanglement involves entities that share a conserved property composed of constant-valued nondividable units as the result of a local interaction. Because they share the property, the entangled entities are described by a single quantum state. After such entangled entities spatially separate from each other, if a measurement of the property is made on one of them, it has been found that a nondividable unit of the property can be instantaneously allocated to that entity. To avoid a violation of Einstein relativity, a local contact is required for an instantaneous transfer. A mechanism that provides such a local contact is described in this paper. This local contact gives rise to correlations between the results of measurements of such a property on spatially separated entangled entities that maintain the predictions of quantum mechanics. This mechanism also explains particle detection locations of entangled photon pairs reported in the Ghosh and Mandel paper
机译:量子纠缠涉及作为局部相互作用的结果的实体,它们共享由恒值不可分单元组成的守恒性质。因为它们共享属性,所以纠缠的实体由单个量子状态描述。在这种纠缠的实体在空间上彼此分离之后,如果对其中一个进行了属性测量,则发现该属性的不可分割单元可以立即分配给该实体。为了避免违反爱因斯坦相对论,瞬时传输需要本地接触。本文介绍了提供这种本地联系人的机制。这种局部接触在保持量子力学预测的空间上分离的纠缠实体上的这种性质的测量结果之间产生了相关性。该机制还解释了Ghosh和Mandel论文中报道的纠缠光子对的粒子检测位置

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