Physics – Condensed Matter – Mesoscale and Nanoscale Physics
Scientific paper
2010-11-15
Physics
Condensed Matter
Mesoscale and Nanoscale Physics
4+ pages, 3 figures
Scientific paper
Coherence in electronic interferometers is typically believed to be restored fully in the limit of small voltages, frequencies and temperatures. However, it is crucial to check this essentially perturbative argument by nonperturbative methods. Here, we use the numerical renormalization group to study ac transport and decoherence in an experimentally realizable model interferometer, a parallel double quantum dot coupled to a phonon mode. The model allows to clearly distinguish renormalization effects from decoherence. We discuss finite frequency transport and confirm the restoration of coherence in the dc limit.
Hofstetter Walter
Kubala Björn
Marquardt Florian
Roosen David
Sindel Michael
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