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Quantum theory of the classical: quantum jumps Born’s Rule and objective classical reality via quantum Darwinism

机译:经典的量子理论:量子跳跃博恩定律和量子达尔文主义的客观经典现实

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摘要

The emergence of the classical world from the quantum substrate of our Universe is a long-standing conundrum. In this paper, I describe three insights into the transition from quantum to classical that are based on the recognition of the role of the environment. I begin with the derivation of preferred sets of states that help to define what exists—our everyday classical reality. They emerge as a result of the breaking of the unitary symmetry of the Hilbert space which happens when the unitarity of quantum evolutions encounters nonlinearities inherent in the process of amplification—of replicating information. This derivation is accomplished without the usual tools of decoherence, and accounts for the appearance of quantum jumps and the emergence of preferred pointer states consistent with those obtained via environment-induced superselection, or einselection. The pointer states obtained in this way determine what can happen—define events—without appealing to Born’s Rule for probabilities. Therefore, pk=|ψk|2 can now be deduced from the entanglement-assisted invariance, or envariance—a symmetry of entangled quantum states. With probabilities at hand, one also gains new insights into the foundations of quantum statistical physics. Moreover, one can now analyse the information flows responsible for decoherence. These information flows explain how the perception of objective classical reality arises from the quantum substrate: the effective amplification that they represent accounts for the objective existence of the einselected states of macroscopic quantum systems through the redundancy of pointer state records in their environment—through quantum Darwinism.This article is part of a discussion meeting issue ‘Foundations of quantum mechanics and their impact on contemporary society’.
机译:古典世界从宇宙的量子底物的出现是一个长期存在的难题。在本文中,我基于对环境作用的认识,描述了从量子到经典的三种见解。我首先从有助于定义存在的状态(我们的日常古典现实)的一组优选状态中得出。它们的出现是希尔伯特空间单一对称性破裂的结果,希尔伯特空间的单一对称性是在量子演化的单一性遇到复制信息放大过程中固有的非线性时发生的。这种推导是在没有通常的去相干工具的情况下完成的,并且说明了量子跃迁的出现以及与通过环境诱导的超选择或电子选择获得的那些指针状态一致的首选指针状态的出现。以这种方式获得的指针状态确定了可能发生的事情(定义事件),而没有对Born的规则求助于概率。因此,现在可以从纠缠辅助不变性或不变性(纠缠量子态的对称性)推导出pk = |ψk| 2 。掌握了概率,您还可以获得对量子统计物理学基础的新见解。而且,现在可以分析造成退相干的信息流。这些信息流解释了如何从量子底物中获得对客观经典现实的认识:它们代表的有效放大是通过环境中指针状态记录的冗余(通过量子达尔文主义)解释了宏观量子系统中电子选择状态的客观存在。本文是“量子力学的基础及其对当代社会的影响”讨论会议的一部分。

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