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Why the Many-Worlds Interpretation of quantum mechanics needs more than Hilbert space structure

In Rik Peels, Jeroen de Ridder & René van Woudenberg (eds.), Scientific Challenges to Common Sense Philosophy. New York: Routledge. pp. 61-70 (2020)

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  1. Ontology of the wave function and the many-worlds interpretation.Lev Vaidman (ed.) - 2019 - Cambridge University Press, UK.
    It is argued that the many-worlds interpretation is by far the best interpretation of quantum mechanics. The key points of this view are viewing the wave functions of worlds in three dimensions and understanding probability through self-locating uncertainty.
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  • A Scientific-Realist Account of Common Sense.Orly Shenker - 2020 - In Rik Peels & René van Woudenberg (eds.), The Cambridge Companion to Common-Sense Philosophy. New York, NY: Cambridge University Press. pp. 333-351.
    There are good reasons to endorse scientific realism and good reasons to endorse common-sense realism. However, it has sometimes been suggested that there is a tension between the two which makes it difficult to endorse both. Can the common-sense picture of the world be reconciled with the strikingly different picture presented to us by our best confirmed theories of science? This chapter critically examines proposals for doing so, and it offers a new one, which is essentially this. It is a (...)
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  • 精神状态的性质.Hilary Putnam - 1967 - In William H. Capitan & Daniel Davy Merrill (eds.), Art, mind, and religion. [Pittsburgh]: University of Pittsburgh Press. pp. 1--223.
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  • Toward a quantum theory of observation.H. D. Zeh - 1973 - Foundations of Physics 3 (1):109-116.
    The program of a physical concept of information is outlined in the framework of quantum theory. A proposal is made for how to avoid the intuitive introduction of observables. The conventional and the Everett interpretations in principle may lead to different dynamical consequences. An ensemble description occurs without the introduction of an abstract concept of information.
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  • An Inquiry into Meaning and Truth.Bertrand Russell - 1942 - Philosophy 17 (65):82-85.
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  • An Inquiry into Meaning and Truth.Bertrand Russell - 1940 - Les Etudes Philosophiques 18 (2):233-233.
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  • An Inquiry into Meaning & Truth.Bertrand Russell - 1941 - Journal of Symbolic Logic 6 (1):29-30.
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  • Two Kinds of High-Level Probability.Meir Hemmo & Orly Shenker - 2019 - The Monist 102 (4):458-477.
    According to influential views the probabilities in classical statistical mechanics and other special sciences are objective chances, although the underlying mechanical theory is deterministic, since the deterministic low level is inadmissible or unavailable from the high level. Here two intuitions pull in opposite directions: One intuition is that if the world is deterministic, probability can only express subjective ignorance. The other intuition is that probability of high-level phenomena, especially thermodynamic ones, is dictated by the state of affairs in the world. (...)
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  • Interpreting the many-worlds interpretation.David Albert & Barry Loewer - 1988 - Synthese 77 (November):195-213.
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  • The Emergent Multiverse: Quantum Theory According to the Everett Interpretation.David Wallace - 2012 - Oxford, GB: Oxford University Press.
    David Wallace argues that we should take quantum theory seriously as an account of what the world is like--which means accepting the idea that the universe is constantly branching into new universes. He presents an accessible but rigorous account of the 'Everett interpretation', the best way to make coherent sense of quantum physics.
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  • Many-worlds interpretation of quantum mechanics.Lev Vaidman - 2008 - Stanford Encyclopedia of Philosophy.
    The Many-Worlds Interpretation (MWI) is an approach to quantum mechanics according to which, in addition to the world we are aware of directly, there are many other similar worlds which exist in parallel at the same space and time. The existence of the other worlds makes it possible to remove randomness and action at a distance from quantum theory and thus from all physics.
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  • Time, decoherence and quantum mechanics.Simon Saunders - 1995 - Synthese 102 (2):235-266.
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