English

Proposal for a phase-coherent thermoelectric transistor

Mesoscale and Nanoscale Physics 2014-09-04 v2 Superconductivity

Abstract

Identifying materials and devices which offer efficient thermoelectric effects at low temperature is a major obstacle for the development of thermal management strategies for low-temperature electronic systems. Superconductors cannot offer a solution since their near perfect electron-hole symmetry leads to a negligible thermoelectric response; however, here we demonstrate theoretically a superconducting thermoelectric transistor which offers unparalleled figures of merit of up to 45\sim 45 and Seebeck coefficients as large as a few mV/K at sub-Kelvin temperatures. The device is also phase-tunable meaning its thermoelectric response for power generation can be precisely controlled with a small magnetic field. Our concept is based on a superconductor-normal metal-superconductor interferometer in which the normal metal weak-link is tunnel coupled to a ferromagnetic insulator and a Zeeman split superconductor. Upon application of an external magnetic flux, the interferometer enables phase-coherent manipulation of thermoelectric properties whilst offering efficiencies which approach the Carnot limit.

Keywords

Cite

@article{arxiv.1405.0565,
  title  = {Proposal for a phase-coherent thermoelectric transistor},
  author = {F. Giazotto and J. W. A. Robinson and J. S. Moodera and F. S. Bergeret},
  journal= {arXiv preprint arXiv:1405.0565},
  year   = {2014}
}

Comments

4.5 pages, 4 color figures, rebuttal version of the manuscript

R2 v1 2026-06-22T04:05:11.824Z