Probing thermoelectric transport with cold atoms
Abstract
We propose experimental protocols to reveal thermoelectric and thermal effects in the transport properties of ultracold fermionic atoms, using the two-terminal setup recently realized at ETH. We show in particular that, for two reservoirs having equal particle numbers but different temperatures initially, the observation of a transient particle number imbalance during equilibration is a direct evidence of thermoelectric (off-diagonal) transport coefficients. This is a time-dependent analogue of the Seebeck effect, and a corresponding analogue of the Peltier effect can be proposed. We reveal that in addition to the thermoelectric coupling of the constriction a thermoelectric coupling also arises due to the finite dilatation coefficient of the reservoirs. We present a theoretical analysis of the protocols, and assess their feasibility by estimating the corresponding temperature and particle number imbalances in realistic current experimental conditions.
Keywords
Cite
@article{arxiv.1209.3942,
title = {Probing thermoelectric transport with cold atoms},
author = {Charles Grenier and Corinna Kollath and Antoine Georges},
journal= {arXiv preprint arXiv:1209.3942},
year = {2013}
}
Comments
5 pages, 4 figures. Modified version, after some modifications