Thermoelectric efficiency at maximum power in a quantum dot

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Published 7 April 2009 Europhysics Letters Association
, , Citation M. Esposito et al 2009 EPL 85 60010 DOI 10.1209/0295-5075/85/60010

0295-5075/85/6/60010

Abstract

We identify the operational conditions for maximum power of a nanothermoelectric engine consisting of a single quantum level embedded between two leads at different temperatures and chemical potentials. The corresponding thermodynamic efficiency agrees with the Curzon-Ahlborn expression up to quadratic terms in the gradients, supporting the thesis of universality beyond linear response.

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