Spin-Seebeck effect in a strongly interacting Fermi gas
Publication date
2012
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
Abstract
We study the spin-Seebeck effect in a strongly interacting, two-component Fermi gas and propose an experiment to measure this effect by relatively displacing spin-up and spin-down atomic clouds in a trap using spin-dependent temperature gradients. We compute the spin-Seebeck coefficient and related spin-heat transport coefficients as functions of temperature and interaction strength. We find that, when the interspin scattering length becomes larger than the Fermi wavelength, the spin-Seebeck coefficient changes sign as a function of temperature, and hence so does the direction of the spin separation. We compute this zero-crossing temperature as a function of interaction strength and in particular in the unitary limit for the interspin scattering.
Keywords
Citation
Wong, C H, Stoof, H T C & Duine, R A 2012, 'Spin-Seebeck effect in a strongly interacting Fermi gas', Physical Review A - Atomic, Molecular, and Optical Physics, vol. 85, 063613, pp. 063613-1-063613-4. https://doi.org/10.1103/PhysRevA.85.063613