The criterion for time symmetry of probabilistic theories and the reversibility of quantum mechanics

New Journal of Physics 5 (130) (2003)
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Abstract

Physicists routinely claim that the fundamental laws of physics are 'time symmetric' or 'time reversal invariant' or 'reversible'. In particular, it is claimed that the theory of quantum mechanics is time symmetric. But it is shown in this paper that the orthodox analysis suffers from a fatal conceptual error, because the logical criterion for judging the time symmetry of probabilistic theories has been incorrectly formulated. The correct criterion requires symmetry between future-directed laws and past-directed laws. This criterion is formulated and proved in detail. The orthodox claim that quantum mechanics is reversible is re-evaluated. The property demonstrated in the orthodox analysis is shown to be quite distinct from time reversal invariance. The view of Satosi Watanabe that quantum mechanics is time asymmetric is verified, as well as his view that this feature does not merely show a de facto or 'contingent' asymmetry, as commonly supposed, but implies a genuine failure of time reversal invariance of the laws of quantum mechanics. The laws of quantum mechanics would be incompatible with a time-reversed version of our universe.

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Citations of this work

The species problem and its logic: Inescapable ambiguity and framework-relativity.Steven James Bartlett - 2015 - Willamette University Faculty Research Website, ArXiv.Org, and Cogprints.Org.

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References found in this work

The emperor’s new mind.Roger Penrose - 1989 - Oxford University Press.
Is Time Handed in a Quantum World?Craig Callender - 2000 - Proceedings of the Aristotelian Society 100 (1):247-269.
Emperor's New Mind.Roger Penrose - 1999 - Oxford University Press UK.
XII: Is time 'handed' in a quantum world?Craig Callender - 2000 - Proceedings of the Aristotelian Society 100 (3):247–269.
Time, The Physical Magnitude.Olivier Costa de Beauregard - 1989 - Philosophy of Science 56 (4):710-712.

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