Journal article
Singular behavior at the edge of Laughlin states
T Can, PJ Forrester, G Téllez, P Wiegmann
Physical Review B Condensed Matter and Materials Physics | Published : 2014
Abstract
A distinguishing feature of fractional quantum Hall (FQH) states is a singular behavior of equilibrium densities at boundaries. In contrast to states at integer filling fraction, such quantum liquids posses an additional dipole moment localized near edges. It enters observable quantities such as universal dispersion of edge states and Lorentz shear stress. For a Laughlin state, this behavior is seen as a peak, or overshoot, in the single-particle density near the edge, reflecting a general tendency of electrons in FQH states to cluster near edges. We compute the singular edge behavior of the one-particle density by a perturbative expansion carried out around a completely filled Landau level...
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Awarded by National Science Foundation
Funding Acknowledgements
P. W. and T. C. thank A. Abanov, A. Zabrodin, and I. Gruzberg for numerous discussions. The work of P. W. and T. C. was supported by NSF DMS-1206648, DMR-0820054 and BSF-2010345. P. W. thanks Andrea Cappelli for the hospitality at INFN Florence when this paper was completed. G. T. acknowledges financial support from Facultad de Ciencias, Uniandes.