Translation-covariant Markovian master equations used in the description of decoherence and dissipation are considered in the general framework of Holevo's results on the characterization of generators of covariant quantum dynamical semigroups. A general connection between the characteristic function of classical Lévy processes and loss of coherence of the statistical operator describing the center of mass degrees of freedom of a quantum system interacting through momentum transfer events with an environment is established. The relationship with both microphysical models and experimental realizations is considered, focusing in particular on recent interferometric experiments exploring the boundaries between classical and quantum world.
Description of decoherence by means of translation-covariant master equations and Lévy processes / B. Vacchini (QP–PQ: QUANTUM PROBABILITY AND WHITE NOISE ANALYSIS). - In: Quantum Probability and Related Topics / [a cura di] J.C. García, R. Quezada, S.B. Sontz. - Singapore : World Scientific, 2008. - ISBN 9789812835260. - pp. 254-265 (( Intervento presentato al 28. convegno Conference on Quantum Probability and Related Topics tenutosi a Guanajuato nel 2007 [10.1142/9789812835277_0021].
Description of decoherence by means of translation-covariant master equations and Lévy processes
B. VacchiniPrimo
2008
Abstract
Translation-covariant Markovian master equations used in the description of decoherence and dissipation are considered in the general framework of Holevo's results on the characterization of generators of covariant quantum dynamical semigroups. A general connection between the characteristic function of classical Lévy processes and loss of coherence of the statistical operator describing the center of mass degrees of freedom of a quantum system interacting through momentum transfer events with an environment is established. The relationship with both microphysical models and experimental realizations is considered, focusing in particular on recent interferometric experiments exploring the boundaries between classical and quantum world.Pubblicazioni consigliate
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