简单超光速纠缠通信方案及其在狭义相对论中的基础

Yi-Fang Chang
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引用次数: 0

摘要

基于量子纠缠和相应的量子通信,我们研究了一种简单的超光速纠缠通信方案,其关键是建立两个相互纠缠的粒子或设备a和b。我们观察和控制a的位置信息,然后可以知道另一个b的相应结果。这不是直接相互发送信息。它可能是超光速的。在狭义相对论中,我们提出了两个被光锥分隔的对称拓扑结构,其中包括相速度为超光速的类空间区间的广义洛伦兹变换(GLT)。它是该方案的基础,可用于测试GLT。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simple Superluminal Entangled Communication Scheme and Its Base in Special Relativity
Based on quantum entanglement and corresponding quantum communication, we research a simple superluminal entangled communication scheme, whose key is to establish two mutually entangled particles or devices A and B. We observe and control the information of A position, then can know the corresponding results of the other B. This is not to send directly information each other. It may be superluminal. In special relativity we provided that there are necessary two symmetrical topological structures separated by the light-cone, which includes the generalized Lorentz transformation (GLT) for the spacelike interval, in which phase velocity is superluminal. It is base of this scheme, and may test GLT.
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