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The Metaphysics of D-CTCs: On the Underlying Assumptions of Deutsch's Quantum Solution to the Paradoxes of Time Travel

2015/10/09 by Lucas Dunlap, Dunlap, Lucas
Mathematics · Medicine · Physics and Astronomy · #Biofield Effects and Biophysics #Quantum Mechanics and Applications #advanced mathematical theories #physics.hist-ph #quant-ph

paper · pdf · doi:10.48550/arxiv.1510.02742

arxiv created 2016/01/18 · arxiv updated 2016/01/19

Abstract

I argue that Deutsch's model for the behavior of systems traveling around closed timelike curves (CTCs) relies implicitly on a substantive metaphysical assumption. Deutsch is employing a version of quantum theory with a significantly supplemented ontology of parallel existent worlds, which differ in kind from the many worlds of the Everett interpretation. Standard Everett does not support the existence of multiple identical copies of the world, which the D-CTC model requires. This has been obscured because he often refers to the branching structure of Everett as a "multiverse", and describes quantum interference by reference to parallel interacting definite worlds. But he admits that this is only an approximation to Everett. The D-CTC model, however, relies crucially on the existence of a multiverse of parallel interacting worlds. Since his model is supplemented by structures that go significantly beyond quantum theory, and play an ineliminable role in its predictions and explanations, it does not represent a quantum solution to the paradoxes of time travel.

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