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Title of Journal: Theor Chem Acc

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Abbravation: Theoretical Chemistry Accounts

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Springer-Verlag

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DOI

10.1016/0014-4827(92)90417-7

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1432-2234

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Entanglement and phase

Authors: Thomas Krüger
Publish Date: 2005/05/05
Volume: 114, Issue: 1-3, Pages: 110-114
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Abstract

Entanglement is the cornerstone of all new technological implications of quantum mechanics which meanwhile extend into the realm of theoretical chemistry In this contribution the relation between entanglement and phase factors is investigated in terms of statistical operators After the introduction of a simplified definition of the separability of a statistical operator a new way to obtain phase information from experiments is presented and the emergence of separability from nonseparability is explained by the loss of a special phase operator containing the quantum part of the systems information


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  2. Ab initio parametrized polarizable force field for rutile-type SnO 2
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  5. Mixing parameters for geometry optimization using the Hamiltonian algorithm
  6. Phenomenological description of the transition state, and the bond breaking and bond forming processes of selected elementary chemical reactions: an information-theoretic study
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  9. Can ORMAS be used for nonadiabatic coupling calculations? SiCH 4 and butadiene contours
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