Parametric pumping at finite frequency
Abstract
We report on a first principles theory for analyzing the parametric electron pump at a finite frequency. The pump is controlled by two pumping parameters with phase difference φ. In the zero frequency limit, our theory predicts the well known result that the pumped current is proportional to φ. For the more general situation of a finite frequency, our theory predicts a non-vanishing pumped current even when the two driving forces are in phase, in agreement with the recent experimental results. We present the physical mechanism behind the nonzero pumped current at φ=0, which we found to be due to photon-assisted processes.
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