Quantization of adiabatic pumped charge in the presence of superconducting lead

Abstract

We investigate the parametric electron pumping of a double barrier structure in the presence of a superconducting lead. The parametric pumping is facilitated by cyclic variation of the barrier heights x1 and x2 of the barriers. In the weak coupling regime, there exists a resonance line in the parameter space (x1,x2) so that the energy of the quasi-bound state is in line with the incoming Fermi energy. Levinson et al found recently that the pumped charge for each pumping cycle is quantized with Q=2e for normal structure when the pumping contour encircles the resonance line. In the presence of a superconducting lead, we find that the pumped charge is quantized with the value 2e.

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