Nonlinear spin diffusion and spin rotation in a trapped Fermi gas
Abstract
Transverse spin diffusion in a polarized, interacting Fermi gas leads to the Leggett-Rice effect, where the spin current precesses around the local magnetization. With a spin-echo sequence both the transverse diffusivity and the spin-rotation parameter are obtained; the sign of reveals the repulsive or attractive character of the effective interaction. In a trapped Fermi gas the spin diffusion equations become nonlinear, and their numerical solution exhibits an inhomogeneous spin state even at the spin echo time. While the microscopic diffusivity and increase at weak coupling, their apparent values inferred from the trap-averaged magnetization saturate in agreement with a recent experiment for a dilute ultracold Fermi gas.
Cite
@article{arxiv.1501.02677,
title = {Nonlinear spin diffusion and spin rotation in a trapped Fermi gas},
author = {Tilman Enss},
journal= {arXiv preprint arXiv:1501.02677},
year = {2015}
}
Comments
9 pages, 5 figures; published version