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Retrocausality in Quantum Phenomena and Chemical Evolution

机译:量子现象中的后因果关系与化学演化

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The interplay between retrocausality and the time-reversal symmetry of the dynamical law of quantum mechanics underscores the significance of the measurement dynamics with the use of indivisible and discrete quantum particles to be mediated. One example of empirical evidence demonstrating the significance of retrocausality going along with time-reversal symmetry is seen in the operation of a reaction cycle to be expected in chemical evolution. A reaction cycle can hold itself when the causative operation of the cycle remains robust, even when facing frequent retrocausal interventions of a quantum-mechanical origin. Quantum mechanics in and of itself has potential in raising a reaction cycle in the prebiotic phase of chemical evolution, even without any help of artefactual scaffoldings of an external origin.
机译:逆因果关系与量子力学动力学定律的时间反转对称之间的相互作用强调了使用不可分割和离散的量子粒子作为介导的测量动力学的重要性。在化学演化中可以预期到的反应循环操作中,可以看到一个经验证据证明逆因果关系与时间反转对称性的重要性。当循环的因果运算保持鲁棒性时,即使面对频繁的量子力学起源的后因介入,反应循环也可以保持自身。即使没有外部来源的人工支架,量子力学本身也有可能在化学演化的益生元阶段提高反应周期。

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