Stoner-type theory of Magnetism in Silicon MOSFETs
arXiv:1609.03538 · doi:10.1007/s10909-017-1781-3
Abstract
We consider quasi-two-dimensional gas of electrons in a typical Si-MOSFET, assuming repulsive contact interaction between electrons. Magnetisation and susceptibility are evaluated within the mean-field approach. Finite thickness of the inversion layer results in an interaction-induced electron wave function change, not found in both purely two-dimensional and three-dimensional (bulk) cases. Taking this self-consistent change into account leads to an increased susceptibility and ultimately to a ferromagnetic transition deep in the high-density metallic regime. We further find that in the paramagnetic state, magnetisation increases sublinearly with increasing in-plane magnetic field. In the opposite limit of low carrier densities, the effects of long-range interaction become important and can be included phenomenologically via bandwidth renormalisation. Our treatment then suggests that with decreasing density, the metal-insulator transition is preceded by a ferromagnetic instability. Results are discussed in the context of the available experimental data, and arguments for the validity of our mean-field scheme are presented.
35 pages, LaTeX, 10 PostScript figures; misprints corrected, references re-numbered; J. Low Temp. Phys., in press
References in corpus (10)
- Metal-insulator transition in two-dimensional electron systems
- Pauli spin susceptibility of a strongly correlated two-dimensional electron liquid
- Strongly correlated two-dimensional plasma explored from entropy measurements
- Spin-Droplet State of an Interacting 2D Electron System
- Density dependent spin susceptibility and effective mass in interacting quasi-two dimensional electron systems
- Valley polarization assisted spin polarization in two dimensions
- Exchange instabilities in electron systems: Bloch versus Stoner Ferromagnetism
- Two dimensional electrons in (100) oriented silicon field effect structures in the region of low concentrations and high mobilities
- Thermodynamic magnetization of a strongly correlated two-dimensional electron system
- Stoner Magnetism in an Inversion Layer