Enhanced thermoelectric effects in a driven one-dimensional system

Braggio, A. and Romito, A. and Taddei, F. (2025) Enhanced thermoelectric effects in a driven one-dimensional system. Physical Review Research, 7 (4): 043273. ISSN 2643-1564

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Abstract

We investigate the thermoelectric properties of a one-dimensional quantum system in the presence of an external driving. We employ Floquet scattering theory to calculate linear-response stationary thermoelectric figures of merit in a single-channel conductor subjected to a periodically varying deltalike potential barrier. We also include a step barrier in one of the leads as a model of a nanoscale inhomogeneous semiconducting system. In the absence of a step barrier, we found that external driving can significantly enhance the Seebeck coefficient, particularly at low temperatures, with a relative increase of up to 200% at high frequencies compared to the static case. In the presence of a step barrier, we found that the thermoelectric Onsager coefficient for the driven case is also enhanced compared to the static case, with a significant photon-assisted effect at low temperatures when the chemical potential is within the semiconductor's gap. Our results demonstrate that external driving can be used to tune and enhance the thermoelectric capabilities of low-electron-density nanodevices.

Item Type:
Journal Article
Journal or Publication Title:
Physical Review Research
ID Code:
234378
Deposited By:
Deposited On:
18 Dec 2025 10:50
Refereed?:
Yes
Published?:
Published
Last Modified:
31 Dec 2025 04:06