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Andreev Tunneling in Strongly Interacting Quantum Dots

R. Raimondi, P. Schwab

cond-mat.mes-hallarXiv:cond-mat/9812302

Abstract

We review recent work on resonant Andreev tunneling through a strongly interacting quantum dot connected to a normal and to a superconducting lead. We derive a general expression for the current flowing in the structure and discuss the linear and non-linear transport in the nonperturbative regime. New effects associated to the Kondo resonance combined with the two-particle tunneling arise. The Kondo anomaly in the I-V characteristics depends on the relative size of the gap energy and the Kondo temperature.

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