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Quantum Formalism with State-Collapse and Superluminal Communication

机译:具有状态崩溃和超光速通信的量子形式主义

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摘要

Given the collapse hypothesis (CH) of quantum measurement, EPR-type correlations along with the hypothesis of the impossibility of superluminal communication (ISC) have the effect of globalizing gross features of the quantum formalism making them universally true. In particular, these hypotheses imply that state transformations of density matrices must be linear and that evolution which preserves purity of states must also be linear. A gedanken experiment shows that Lorentz covariance along with the second law of thermodynamics imply a nonentropic version of ISC. Partial results using quantum logic suggest, given ISC and a version of CH, a connection between Lorentz covariance and the covering law. These results show that standard quantum mechanics is structurally unstable, and suggest that viable relativistic alternatives must question CH. On may also speculate that some features of the Hilbett-space model of quantum mechanics have their origin in space time structure.
机译:给定量子测量的崩溃假说(CH),EPR类型的相关性以及超光速通信不可行的假说(ISC)具有使量子形式主义的总体特征全球化的效果,从而使其普遍适用。特别地,这些假设暗示密度矩阵的状态转换必须是线性的,并且保留状态纯净的演化也必须是线性的。一个实验表明,洛伦兹协方差和热力学第二定律暗示了ISC的非熵形式。在给定ISC和CH版本的情况下,使用量子逻辑的部分结果表明,洛伦兹协方差与覆盖律之间存在联系。这些结果表明标准的量子力学在结构上是不稳定的,并且表明可行的相对论替代品必须对CH提出质疑。 On可能还推测,量子力学的希尔伯特空间模型的某些特征起源于时空结构。

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