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

机译:古典的量子理论:量子跳跃,天生的统治和通过量子达尔文主义的客观古典现实

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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, p(k) = vertical bar psi(k)vertical bar(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.
机译:从我们宇宙量子基板的古典世界的出现是一个长期的难题。在本文中,我描述了三个洞察于从量子到经典的过渡,这是基于对环境的作用的识别。我从首选各组的推导开始,有助于定义存在的东西 - 我们的日常经典现实。当量子演变的统计空间的单一对称性的统一对称性时,它们出现了当量子演变的统一性遇到在扩大复制信息过程中固有的非线性时发生的。该衍生在没有常规的转移工具的情况下实现,并且考虑了量子跳跃的外观以及优选的指针状态的出现与通过环境诱导的超细或eInselection获得的指针状态一致。以这种方式获得的指针状态决定了可能发生的事情 - 定义事件 - 而不吸引出于出生的概率规则。因此,P(k)=垂直条PSI(k)垂直条(2)现在可以从缠结辅助的不变性,或蜂窝 - 缠绕量子状态的对称性推导出来。凭借手头的概率,人们还会在量子统计物理学的基础上获得新的见解。此外,现在可以分析负责阻断的信息流。这些信息流解释了客观古典现实的感知如何从量子衬底产生:它们所代表的有效扩增通过将在其环境中的指针状态记录中的冗余冗余的宏观级达尔文主义的冗余来占宏观量子系统的eInselated状态的目标存在。

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