Change of Decoherence Scenario and Appearance of Localization due to Reservoir Anharmonicity
- 14 April 2006
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review Letters
- Vol. 96 (14) , 140405
- https://doi.org/10.1103/physrevlett.96.140405
Abstract
Although coupling to a super-Ohmic bosonic reservoir leads only to partial dephasing on short time scales, exponential decay of coherence appears in the Markovian limit (for long times) if anharmonicity of the reservoir is taken into account. This effect not only qualitatively changes the decoherence scenario but also leads to localization processes in which superpositions of spatially separated states dephase with a rate that depends on the distance between the localized states. As an example of the latter process, we study the decay of coherence of an electron state delocalized over two semiconductor quantum dots due to anharmonicity of phonon modes.Keywords
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This publication has 28 references indexed in Scilit:
- Pure Decoherence in Quantum SystemsOpen Systems & Information Dynamics, 2004
- Decoherence, einselection, and the quantum origins of the classicalReviews of Modern Physics, 2003
- Impact of pure dephasing on the nonlinear optical response of single quantum dots and dot ensemblesPhysical Review B, 2003
- Coherent and incoherent phonon processes in artificial atomsThe European Physical Journal D, 2003
- Electron-phonon dynamics in optically excited quantum dots: Exact solution for multiple ultrashort laser pulsesPhysical Review B, 2002
- Theory of pure dephasing and the resulting absorption line shape in semiconductor quantum dotsPhysical Review B, 2002
- Coherent states via decoherencePhysical Review Letters, 1993
- The emergence of classical properties through interaction with the environmentZeitschrift für Physik B Condensed Matter, 1985
- Environment-induced superselection rulesPhysical Review D, 1982
- Pointer basis of quantum apparatus: Into what mixture does the wave packet collapse?Physical Review D, 1981