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AbstractAbstract
[en] In this thesis the time-resolved electron transport in quantum dot systems was studied. For this two different formalisms were presented: The nonequilibrium Green functions and the generalized quantum master equations. For both formalisms a propagation method for the numerical calculation of time-resolved expectation values, like the occupation and the electron current, was developed. For the demonstration of the propagation method two different question formulations were considered. On the one hand the stochastically driven resonant-level model was studied. On the other hand the pulse-induced transport through a double quantum dot was considered.
Original Title
Zeitaufgeloester Elektronentransport in Quantendotsystemen
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30 Jun 2010; 147 p; Diss. (Dr.rer.nat.)
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Miscellaneous
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Thesis/Dissertation
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