Novel edge magnetoplasmons with dissipation localized near the edges for very low temperatures and sharp density profiles
O. G. Balev (1), P. Vasilopoulos (2) ((1) Institute of Physics of, Semiconductors, Kiev, Ukraine, (2) Concordia University, Department of, Physics, Montreal, Canada)

TL;DR
This paper presents a microscopic analysis of edge magnetoplasmons in the quantum Hall regime, revealing new undamped modes called edge helicons and temperature-dependent damping behaviors near sharp edges.
Contribution
It introduces a microscopic model for EMPs with localized dissipation near edges, identifying nearly undamped edge helicons and analyzing temperature-dependent damping effects.
Findings
Existence of independent symmetric and antisymmetric EMP modes
Identification of nearly undamped edge helicons at certain conditions
Damping of fundamental EMP varies with temperature as T^3 or T^(-3)
Abstract
A treatment of edge magnetoplasmons (EMP), based on a microscopic evaluation of the local contributions to the current density, is presented. It is valid in the quantum Hall regime for filling factor \nu=1 or 2 and low temperatures when the dissipation is localized near the edge. The confining potential, flat in the interior of the channel, is assumed smooth on the magnetic length scale but sufficiently steep at the edges that the density profile is sharp and the dissipation considered results only from electron intraedge-intralevel transitions due to scattering by piezoelectrical phonons. For wide channels there exist independent EMP modes spatially symmetric and antisymmetric with respect to the edge. Certain of these modes can propagate nearly undamped even when the dissipation is strong and are thus termed edge helicons. In contrast with well-known results for a spatially…
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Taxonomy
TopicsGeomagnetism and Paleomagnetism Studies · Aeolian processes and effects
