Effects of a Parallel Magnetic Field on the Metal-Insulator Transition in a Dilute Two-Dimensional Electron System
arXiv:cond-mat/0112344 · doi:10.1103/PhysRevLett.88.136402
Abstract
The temperature dependence of conductivity of a two-dimensional electron system in silicon has been studied in parallel magnetic fields B. At B=0, the system displays a metal-insulator transition at a critical electron density , and in the metallic phase. At low fields ( T), increases as (), and the zero-temperature conductivity scales as (where , and is electron density) as expected for a quantum phase transition. The metallic phase persists in fields of up to 18 T, consistent with the saturation of at high fields.
published version