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Experimental motivation and empirical consistency in minimal no-collapse quantum mechanics

机译:最小无塌陷量子力学中的实验动力和经验一致性

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We analyze three important experimental domains (SQUIDs, molecular interferometry, and Bose-Einstein condensation) as well as quantum-biophysical studies of the neuronal apparatus to argue that (i) the universal validity of unitary dynamics and the superposition principle has been confirmed far into the mesoscopic and macroscopic realm in all experiments conducted thus far; (ii) all observed "restrictions" can be correctly and completely accounted for by taking into account environmental decoherence effects; (iii) no positive experimental evidence exists for physical state-vector collapse; (iv) the perception of single "outcomes" is likely to be explainable through decoherence effects in the neuronal apparatus. We also discuss recent progress in the understanding of the emergence of quantum probabilities and the objectification of observables. We conclude that it is not only viable, but moreover compelling to regard a minimal no-collapse quantum theory as a leading candidate for a physically motivated and empirically consistent interpretation of quantum mechanics. (c) 2005 Elsevier Inc. All rights reserved.
机译:我们分析了三个重要的实验领域(SQUID,分子干涉和Bose-Einstein缩合)以及神经元装置的量子生物物理研究,以证明(i)unit动力学和叠加原理的普遍有效性已被证实迄今为止进行的所有实验的介观和宏观领域; (ii)所有观察到的“限制”都可以通过考虑环境不连贯影响而得到正确和完整的解释; (iii)没有关于物理状态向量崩溃的积极实验证据; (iv)单个“结果”的感知很可能可以通过神经元设备的退相干效应来解释。我们还将讨论在理解量子概率的出现和可观测对象的客观化方面的最新进展。我们得出的结论是,将最小的无塌陷量子理论视为物理激励和经验一致的量子力学解释的主要候选人,这不仅是可行的,而且是令人信服的。 (c)2005 Elsevier Inc.保留所有权利。

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