Quantum dynamical entropies and Gács algorithmic entropy (Q406106)

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scientific article; zbMATH DE number 6341016
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Quantum dynamical entropies and Gács algorithmic entropy
scientific article; zbMATH DE number 6341016

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    Quantum dynamical entropies and Gács algorithmic entropy (English)
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    8 September 2014
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    Summary: Several quantum dynamical entropies have been proposed that extend the classical Kolmogorov-Sinai (dynamical) entropy. The same scenario appears in relation to the extension of algorithmic complexity theory to the quantum realm. A theorem of Brudno establishes that the complexity per unit time step along typical trajectories of a classical ergodic system equals the KS-entropy. In the following, we establish a similar relation between the Connes-Narnhofer-Thirring quantum dynamical entropy for the shift on quantum spin chains and the Gács algorithmic entropy. We further provide, for the same system, a weaker linkage between the latter algorithmic complexity and a different quantum dynamical entropy proposed by Alicki and Fannes.
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    quantum spin chains
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    algorithmic complexity
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    dynamical entropy
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