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The Relational Blockworld Interpretation of Non-relativistic Quantum Mechanics

机译:非相对论量子力学的关系块解释

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We introduce a new interpretation of non-relativistic quantum mechanics (QM) called Relational Blockworld (RBW). We motivate the interpretation by outlining two results due to Kaiser, Bohr, Ulfeck, Mottelson, and Anandan, independently. First, the canonical commutation relations for position and momentum can be obtained from boost and translation operators, respectively, in a spacetime where the relativity of simultaneity holds. Second, the QM density operator can be obtained from the spacetime symmetry group of the experimental configuration exclusively. We show how QM, obtained from relativistic quantum field theory per RBW, explains the twin-slit experiment and conclude by resolving the standard conceptual problems of QM, i.e., the measurement problem, entanglement and non-locality.
机译:我们介绍了一个名为关系BlockWorld(RBW)的非相对论量子力学(QM)的新解释。我们通过独立概述履历,Bohr,Ulfeck,Mottelson和Anandan,通过概述两种结果来激励解释。首先,可以分别在同时相对性保持的时期升压和翻译操作员获得位置和动量的规范换向关系。其次,QM密度操作员可以专门从实验配置的时空对称组获得。我们展示了每次RBW的相对论量子场理论获得的QM,解释了双缝实验,通过解决QM的标准概念问题,即测量问题,纠缠和非地方性。

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