In the microscopic modeling of new-generation electronic quantum nanodevices a variety of simulation strategies have been proposed and employed. Aim of this Letter is to point out virtues versus intrinsic limitations of non-Markovian density-matrix approaches; we shall show that the usual mean-field treatment may lead to highly unphysical results, like negative distribution probabilities and non-dissipative behaviours, which are particularly severe in zero-dimensional electronic systems coupled to dispersionless phonon modes. This is in striking contrast with Markovian treatments, where a proper combination of adiabatic limit and mean-field schemes guarantees a physically acceptable solution; as a result, the unusual conclusion is that two approximations are better than one.

Electronic phase coherence vs. dissipation in solid-state quantum devices: Two approximations are better than one / Iotti, Rita Claudia; Rossi, Fausto. - In: EUROPHYSICS LETTERS. - ISSN 0295-5075. - STAMPA. - 112:6(2015), p. 67005. [10.1209/0295-5075/112/67005]

Electronic phase coherence vs. dissipation in solid-state quantum devices: Two approximations are better than one

IOTTI, Rita Claudia;ROSSI, FAUSTO
2015

Abstract

In the microscopic modeling of new-generation electronic quantum nanodevices a variety of simulation strategies have been proposed and employed. Aim of this Letter is to point out virtues versus intrinsic limitations of non-Markovian density-matrix approaches; we shall show that the usual mean-field treatment may lead to highly unphysical results, like negative distribution probabilities and non-dissipative behaviours, which are particularly severe in zero-dimensional electronic systems coupled to dispersionless phonon modes. This is in striking contrast with Markovian treatments, where a proper combination of adiabatic limit and mean-field schemes guarantees a physically acceptable solution; as a result, the unusual conclusion is that two approximations are better than one.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2638303
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