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In defence of the self-location uncertainty account of probability in the many-worlds interpretation

机译:捍卫许多世界解释中的自我定位不确定性的概率

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We defend the many-worlds interpretation of quantum mechanics (MWI) against the objection that it cannot explain why measurement outcomes are predicted by the Born probability rule. We understand quantum probabilities in terms of an observer's self-location probabilities. We formulate a probability postulate for the MWI: the probability of self-location in a world with a given set of outcomes is the absolute square of that world's amplitude. We provide a proof of this postulate, which assumes the quantum formalism and two principles concerning symmetry and locality. We also show how a structurally similar proof of the Born rule is available for collapse theories. We conclude by comparing our account to the recent account offered by Sebens and Carroll. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们捍卫众多世界对量子力学(MWI)的解释,反对意见无法解释为什么由于出生的概率规则预测了测量结果。 我们在观察者的自我定位概率方面了解量子概率。 我们制定了MWI的概率假设:具有特定成果集的世界中自我职位的可能性是世界幅度的绝对平方。 我们提供了这种假设的证据,它假设量子形式主义和关于对称性和地方的两项原则。 我们还展示了出生的结构的结构性类似的证明可用于崩溃理论。 通过将我们的帐户与最近由Sebens和Carroll提供的帐户进行比较来结束。 (c)2018年elestvier有限公司保留所有权利。

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