Unitarity and causality in generalized quantum mechanics for nonchronal spacetimes.

نویسنده

  • Hartle
چکیده

Spacetime must be foliable by spacelike surfaces for the quantum mechanics of matter fields to be formulated in terms of a unitarily evolving state vector defined on spacelike surfaces. When a spacetime cannot be foliated by spacelike surfaces, as in the case of spacetimes with closed timelike curves, a more general formulation of quantum mechanics is required. In such generalizations the transition matrix between alternatives in regions of spacetime where states can be defined may be non-unitary. This paper describes a generalized quantum mechanics whose probabilities consistently obey the rules of probability theory even in the presence of such non-unitarity. The usual notion of state on a spacelike surface is lost in this generalization and familiar notions of causality are modified. There is no signaling outside the light cone, no non-conservation of energy, no “Everett phones”, and probabilities of present events do not depend on particular alternatives of the future. However, the generalization is acausal in the sense that the existence of non-chronal regions of spacetime in the future can affect the probabilities of alternatives today. The detectability of non-unitary evolution and violations ∗[email protected] 1 of causality in measurement situations are briefly considered. The evolution of information in non-chronal spacetimes is described. Typeset using REVTEX 2

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عنوان ژورنال:
  • Physical review. D, Particles and fields

دوره 49 12  شماره 

صفحات  -

تاریخ انتشار 1994