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Lindblad Dynamics in Phase Space Troppmann, Stephanie
Description
The Lindblad equation describes the evolution of open quantum systems by evolving density matrices or trace class operators. In a special but interesting case, we can rewrite the equation as a Schrödinger equation with complex Hamiltonian. This allows us to transfer previous results for semiclassical wave packets to the Lindblad equation and to explicitly describe decoherence effects. The talk presents joint work with C. Lasser (TU M\"unchen) and Roman Schubert (U Bristol).
Item Metadata
Title |
Lindblad Dynamics in Phase Space
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Creator | |
Publisher |
Banff International Research Station for Mathematical Innovation and Discovery
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Date Issued |
2016-01-28T13:56
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Description |
The Lindblad equation describes the evolution of open quantum systems by evolving density matrices or trace class operators. In a special but interesting case, we can rewrite the equation as a Schrödinger equation with complex Hamiltonian. This allows us to transfer previous results for semiclassical wave packets to the Lindblad equation and to explicitly describe decoherence effects.
The talk presents joint work with C. Lasser (TU M\"unchen) and Roman Schubert (U Bristol).
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Extent |
29 minutes
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Subject | |
Type | |
File Format |
video/mp4
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Language |
eng
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Notes |
Author affiliation: Technische Universitaet-Muenchen
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Series | |
Date Available |
2016-07-29
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Provider |
Vancouver : University of British Columbia Library
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Rights |
Attribution-NonCommercial-NoDerivatives 4.0 International
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DOI |
10.14288/1.0307235
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URI | |
Affiliation | |
Peer Review Status |
Unreviewed
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Scholarly Level |
Graduate
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Rights URI | |
Aggregated Source Repository |
DSpace
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Item Media
Item Citations and Data
Rights
Attribution-NonCommercial-NoDerivatives 4.0 International