Thermoelectric conversion at 30K in InAs/InP nanowire quantum dots
Abstract
We demonstrate high-temperature thermoelectric conversion in InAs/InP nanowire quantum dots by taking advantage of their strong electronic confinement. The electrical conductance G and the thermopower S are obtained from charge transport measurements and accurately reproduced with a theoretical model accounting for the multi-level structure of the quantum dot. Notably, our analysis does not rely on the estimate of co-tunnelling contributions since electronic thermal transport is dominated by multi-level heat transport. By taking into account two spin-degenerate energy levels we are able to evaluate the electronic thermal conductance K and investigate the evolution of the electronic figure of merit ZT as a function of the quantum dot configuration and demonstrate ZT ~ 35 at 30 K, corresponding to an electronic effciency at maximum power close to the Curzon- Ahlborn limit.
Keywords
Cite
@article{arxiv.1903.06935,
title = {Thermoelectric conversion at 30K in InAs/InP nanowire quantum dots},
author = {Domenic Prete and Paolo Andrea Erdman and Valeria Demontis and Valentina Zannier and Daniele Ercolani and Lucia Sorba and Fabio Beltram and Francesco Rossella and Fabio Taddei and Stefano Roddaro},
journal= {arXiv preprint arXiv:1903.06935},
year = {2019}
}
Comments
7 pages, 4 figures