Peltier cooling in Corbino-geometry quantum Hall systems
Abstract
Quantum Hall systems having Corbino geometry are expected to have a large Peltier coefficient in the quantum Hall plateau region. We present an analytic formula for calculated employing the spectral conductivity obtained based on the self-consistent Born approximation. The coefficient is shown to have a large negative (positive) value just above (below) an integer Landau-level filling, with the absolute value increasing with decreasing temperature or decreasing disorder, and approaching the saw-tooth shape in the limit of vanishing disorder, where is the highest occupied Landau level and is the chemical potential. As an initial attempt to experimentally observe the effect of the large , we measure the electron temperature near the outer perimeter of a Corbino disk, applying a radial dc current . The temperature is observed to increase or decrease depending on the direction of and the sign of as expected from the Peltier effect. Notably, becomes lower than the bath temperature for outward (inward) in the region where ().
Cite
@article{arxiv.2603.18922,
title = {Peltier cooling in Corbino-geometry quantum Hall systems},
author = {Akira Endo and Yoshiaki Hashimoto},
journal= {arXiv preprint arXiv:2603.18922},
year = {2026}
}
Comments
18 pages, 7 figures