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首页> 外文期刊>Journal of Quantum Information Science >G-CPT Symmetry of Quantum Emergence and Submergence—An Information Conservational Multiagent Cellular Automata Unification of CPT Symmetry and CP Violation for Equilibrium-Based Many-World Causal Analysis of Quantum Coherence and Decoherence
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G-CPT Symmetry of Quantum Emergence and Submergence—An Information Conservational Multiagent Cellular Automata Unification of CPT Symmetry and CP Violation for Equilibrium-Based Many-World Causal Analysis of Quantum Coherence and Decoherence

机译:G-CPT对称性的量子出没和淹没— CPT对称性和CP违规的信息守恒多主体细胞自动机统一性,用于基于均衡的量子相干和去相干多世界因果分析

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An equilibrium-based YinYang bipolar dynamic Generalization of CPT (G-CPT) symmetry is introduced based on energy/information conservational quantum emergence-submergence. As a bottleneck of quantum computing, quantum decoherence or collapse has been plaguing quantum mechanics for decades. It is suggested that the crux of the problem can trace its origin back to the incompleteness of CPT symmetry due to the lack of holistic representation for equilibrium-based bipolar coexistence. In this work, the notion of quantum emergence-submergence is coined as two opposite processes with bipolar energy/information conservation. The new notion leads to G-CPT symmetry supported by a Bipolar Quantum Cellular Automata (BQCA) interpretation of quantum mechanics. It is shown that the new interpretation further leads to the unification of electromagnetic particle-antiparticle bipolarity and gravitational action-reaction bipolarity as well as CPT symmetry and CP violation into a philosophically, geometrically and logically different quantum gravity theory. On one hand, G-CPT symmetry enables a Bipolar Quantum Agent (BQA) to emerge as a bipolar quantum superposition or entanglement coupled to a globally coherent BQCA; on the other hand, G-CP violation supports a causal theory of BQA submergence or decoupling from the global coherence. In turn, BQAs can submerge from one world but emerge in another within YinYang bipolar quantum geometry. It is suggested that all logical, physical, social, biological and mental worlds are bipolar quantum entangled under G-CPT symmetry. It is contended that G-CPT symmetry constitutes an analytical paradigm of quantum mechanics and quantum gravity—a fundamental departure from “what goes around comes around”. The new paradigm leads to a number of predictions and challenges.
机译:基于能量/信息守恒量子出现-淹没,引入了基于平衡的CPT阴阳双极动力学广义(G-CPT)对称性。作为量子计算的瓶颈,几十年来,量子退相干或崩溃一直困扰着量子力学。建议问题的症结可以归因于CPT对称性的不完全,原因是缺乏基于平衡的双极共存的整体表示。在这项工作中,量子出现-淹没的概念被创造为具有双极能量/信息守恒的两个相反过程。新概念导致G-CPT对称性得到双极量子细胞自动机(BQCA)量子力学解释的支持。结果表明,新的解释进一步将电磁粒子-反粒子双极性和重力作用-反应双极性以及CPT对称性和CP违规统一为哲学,几何和逻辑上不同的量子引力理论。一方面,G-CPT对称性使双极量子代理(BQA)能够以与整体相干BQCA耦合的双极量子叠加或纠缠态出现。另一方面,G-CP违规支持BQA淹没或与全局一致性脱钩的因果理论。反过来,BQA可以从一个世界中浸入,但是在阴阳双极量子几何中又可以出现在另一个世界中。建议所有逻辑,物理,社会,生物学和心理世界在G-CPT对称下都是双极性量子纠缠。有人认为,G-CPT对称性构成了量子力学和量子引力的分析范式,与“周围发生的事情”的根本背离。新的范式导致了许多预测和挑战。

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