Title of article :
Evolution in quantum causal histories
Author/Authors :
Sahlmann، H نويسنده , , Hawkins، E نويسنده , , Markopoulou، F نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
-3838
From page :
3839
To page :
0
Abstract :
We provide a precise definition and analysis of quantum causal histories (QCHs). A QCH consists of a discrete, locally finite, causal pre-spacetime with matrix algebras encoding the quantum structure at each event. The evolution of quantum states and observables is described by completely positive maps between the algebras at causally related events. We show that this local description of evolution is sufficient and that unitary evolution can be recovered wherever it should actually be expected. This formalism may describe a quantum cosmology without an assumption of global hyperbolicity; it is thus more general than the Wheeler–De Witt approach. The structure of a QCH is also closely related to quantum information theory and algebraic quantum field theory on a causal set.
Keywords :
Parametric bootstrap , Model diagnosis , Restricted latent class models , Identifiability , Goodness of fit
Journal title :
CLASSICAL AND QUANTUM GRAVITY
Serial Year :
2003
Journal title :
CLASSICAL AND QUANTUM GRAVITY
Record number :
72834
Link To Document :
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