arXiv · cond-mat/0402399
Dependence of spin susceptibility of a two-dimensional electron system on the valley degree of freedom
Abstract
We report measurements of the spin susceptibility, $χ\propto g_v g^*m^*$, in an AlAs two-dimensional electron system where, via the application of in-plane stress, we transfer electrons from one conduction-band valley to another ($g_v$ is the valley degeneracy, and $m^*$ and $g^*$ are the electron effective mass and g-factor). At a given density, when the two valleys are equally populated ($g_v=2$), the measured $g^*m^*$ is smaller than when only one valley is occupied ($g_v=1$). This observation counters the common assumption that a two-valley two-dimensional system is effectively more dilute than a single-valley system because of its smaller Fermi energy.
Explore related subjects
Keep this discovery
Y. P. Shkolnikov, K. Vakili, E. P. De Poortere, M. Shayegan. 2004-02-15. Dependence of spin susceptibility of a two-dimensional electron system on the valley degree of freedom. https://doi.org/10.1103/physrevlett.92.246804
Cite the original work for its findings. Save a collection to share your selection of sources.