paper

Magnetoelasticity theory of incompressible quantum Hall liquids

arXiv:cond-mat/0505715 · doi:10.1103/PhysRevB.73.205340

Abstract

A simple and physically transparent magnetoelasticity theory is proposed to describe linear dynamics of incompressible fractional quantum Hall states. The theory manifestly satisfies the Kohn theorem and the -sum rule, and predicts a gaped intra-Landau level collective mode with a roton minimum. In the limit of vanishing bare mass the correct form of the static structure factor, , is recovered. We establish a connection of the present approach to the fermionic Chern-Simons theory, and discuss further extensions and applications. We also make an interesting analogy of the present theory to the theory of visco-elastic fluids.

RevTeX 4, 6 pages; expanded version to appear in PRB; more technical details, and discussions of the physics added