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217De Sitter Space Without Dynamical Quantum FluctuationsFoundations of Physics 46 (6): 702-735. 2016.We argue that, under certain plausible assumptions, de Sitter space settles into a quiescent vacuum in which there are no dynamical quantum fluctuations. Such fluctuations require either an evolving microstate, or time-dependent histories of out-of-equilibrium recording devices, which we argue are absent in stationary states. For a massive scalar field in a fixed de Sitter background, the cosmic no-hair theorem implies that the state of the patch approaches the vacuum, where there are no fluctua…Read more
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1242Many Worlds, the Born Rule, and Self-Locating UncertaintyIn Daniele C. Struppa & Jeffrey M. Tollaksen (eds.), Quantum Theory: A Two-Time Success Story: Yakir Aharonov Festschrift, Springer. pp. 157-169. 2013.We provide a derivation of the Born Rule in the context of the Everett (Many-Worlds) approach to quantum mechanics. Our argument is based on the idea of self-locating uncertainty: in the period between the wave function branching via decoherence and an observer registering the outcome of the measurement, that observer can know the state of the universe precisely without knowing which branch they are on. We show that there is a uniquely rational way to apportion credence in such cases, which lead…Read more
Sean M. Carroll
Johns Hopkins University
Santa Fe Institute
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Santa Fe InstituteFractal Faculty (Part-time)
Baltimore, Maryland, United States of America
Areas of Specialization
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Areas of Interest
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