paper

Microwave Resonance and Carrier-Carrier Interaction in Two-Dimensional Hole Systems at High Magnetic Field

arXiv:cond-mat/9810066

Abstract

Microwave frequency conductivity, Re(), of high quality two-dimensional hole systems (2DHS) in a large perpendicular magnetic field (B) is measured with the carrier density () of the 2DHS controlled by a backgate bias. The high B insulating phase of the 2DHS exhibits a microwave resonance that remains well-defined, but shifts to higher peak frequency () as is reduced. Over a wide range of is observed for the two samples we measured. The data clearly indicate that both carrier-carrier interactions and disorder are indispensable in determining the dynamics of the insulator. The dependence of is consistent with a weakly pinned Wigner crystal in which domain size increases with , due to larger carrier-carrier interaction.

4 pages, 3 figures, submitted to Physical Review Letters