arXiv · cond-mat/9406101
Low-Temperature Spin Diffusion in a Spin-Polarized Fermi Gas
Abstract
We present a finite temperature calculation of the transverse spin-diffusion coefficient, $D_\bot$, in a dilute degenerate Fermi gas in the presence of a small external magnetic field, $H$. While the longitudinal diffusion coefficient displays the conventional low-temperature Fermi-liquid behavior, $D_\parallel \propto T^{-2}$, the corresponding results for $D_\bot$ show three separate regimes: (a) $D_\bot \sim H^{-2}$ for $T \ll H$; (b) $D_\bot \sim T^{-2}$, $D_\bot /D_\parallel \neq 1$ for $T \gg H$ and large spin-rotation parameter $ξ\gg 1$, and (c) $D_\bot = D_\parallel \propto T^{-2}$ for $T \gg H$ and $ξ\ll 1$. Our results are qualitatively consistent with the available experimental data in weakly spin-polarized $^3{\rm He}$ and $^3{\rm He} - ^4{\rm He}$ mixtures.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
D. I. Golosov, A. E. Ruckenstein. 1994-06-24. Low-Temperature Spin Diffusion in a Spin-Polarized Fermi Gas. https://doi.org/10.1103/physrevlett.74.1613
Cite the original work for its findings. Save a collection to share your selection of sources.