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Large thermoelectric power and figure of merit in a ferromagnetic-quantum dot-superconducting device

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arxiv 1512.06242 v2 pith:FO4PID2J submitted 2015-12-19 cond-mat.mes-hall cond-mat.supr-con

Large thermoelectric power and figure of merit in a ferromagnetic-quantum dot-superconducting device

classification cond-mat.mes-hall cond-mat.supr-con
keywords spinthermoelectricdeviceexternalferromagnetic-quantumfigurelargemerit
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the thermoelectric properties of a quantum dot coupled to ferromagnetic and superconducting electrodes. The combination of spin polarized tunneling at the ferromagnetic-quantum dot interface and the application of an external magnetic field that Zeeman splits the dot energy level leads to large values of the thermopower (Seebeck coefficient). Importantly, the thermopower can be tuned with an external gate voltage connected to the dot. We compute the figure of merit that measures the efficiency of thermoelectric conversion and find that it attains high values. We discuss the different contributions from Andreev reflection processes and quasiparticle tunneling into and out of the superconducting contact. Furthermore, we obtain dramatic variations of both the magnetothermopower and the spin Seebeck effect, which suggest that in our device spin currents can be controlled with temperature gradients only.

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