paper

Quantitative Measurements of Giant and Quantized Microwave Faraday Rotation

arXiv:1906.11230 · doi:10.1103/PhysRevB.102.085302

Abstract

We report {\it quantitative} microwave Faraday rotation measurements conducted with a high-mobility two-dimensional electron gas (2DEG) in a GaAs/AlGaAs semiconductor heterostructure. In a magnetic field, the Hall effect and the Faraday effect arise from the action of Lorentz force on electrons in the 2DEG. As with the Hall effect, a classical Faraday effect is observed at low magnetic field as well as a quantized Faraday effect at high magnetic field. The high electron mobility of the 2DEG enables a giant single-pass Faraday rotation of ~rad) to be achieved at a modest magnetic field of ~mT. In the quantum regime, we find that the Faraday rotation is quantized in units of , where is the fine structure constant. The enhancement in rotation quantum is attributed to electromagnetic confinement within a waveguide structure.

Quantitative Measurements of Giant and Quantized Microwave Faraday Rotation · wovepaper