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      Tunnel spectroscopy in ac-driven quantum dot nanoresonators

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          Abstract

          Electronic transport in a triple quantum dot shuttle device in the presence of an ac field is analyzed within a fully quantum mechanical framework. A generalized density matrix formalism is used to describe the time evolution for electronic state occupations in a dissipative phonon bath. In the presence of an ac gate voltage, the electronic states are dressed by photons and the interplay between photon and vibrational sidebands produces current characteristics that obey selection rules. Varying the ac parameters allows to tune the tunneling current features. In particular, we show that coherent destruction of tunneling can be achieved in our device.

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          Author and article information

          Journal
          18 May 2008
          Article
          10.1063/1.2919797
          0805.2716
          4a870240-0803-4b76-a6df-c2f3ad356e8c

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          APPLIED PHYSICS LETTERS 92, 192102 (2008)
          cond-mat.other

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