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Fano resonance in a normal metal/ferromagnet-quantum dot-superconductor device

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arxiv 1509.04801 v1 pith:KDDPU6PV submitted 2015-09-16 cond-mat.str-el

Fano resonance in a normal metal/ferromagnet-quantum dot-superconductor device

classification cond-mat.str-el
keywords resonancekondoabssandreevfanofieldinterplaylineshape
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate theoretically the Andreev transport through a quantum dot strongly coupled with a normal metal/ferromagnet and a superconductor (N/F-QD-S), in which the interplay between the Kondo resonance and the Andreev bound states (ABSs) has not been clearly clarified yet. Here we show that the interference between the Kondo resonance and the ABSs modifies seriously the lineshape of the Kondo resonance, which manifests as a Fano resonance. The ferromagnetic lead with spin-polarization induces an effective field, which leads to splitting both of the Kondo resonance and the ABSs. The spin-polarization together with the magnetic field applied provides an alternative way to tune the lineshape of the Kondo resonances, which is dependent of the relative positions of the Kondo resonance and of the ABSs. These results indicate that the interplay between the Kondo resonance and the ABSs can significantly affect the Andreev transport, which could be tested by experiments.

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