Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session B07: Integer Quantum Hall
11:15 AM–2:15 PM,
Monday, March 5, 2018
LACC
Room: 153B
Sponsoring
Unit:
DCMP
Chair: Javad Shabani, New York University
Abstract ID: BAPS.2018.MAR.B07.8
Abstract: B07.00008 : Integer quantum Hall transitions on tight-binding lattices*
12:39 PM–12:51 PM
Presenter:
Martin Puschmann
(Institute of Physics, Chemnitz University of Technology)
Authors:
Martin Puschmann
(Institute of Physics, Chemnitz University of Technology)
Philipp Cain
(Institute of Physics, Chemnitz University of Technology)
Michael Schreiber
(Institute of Physics, Chemnitz University of Technology)
Thomas Vojta
(Department of Physics, Missouri University of Science and Technology)
We investigate the integer quantum Hall transition in the lowest Landau band of two-dimensional tight-binding lattices for non-interacting electrons affected by a perpendicular magnetic field. Specifically, we consider both simple square lattices, where Landau levels are broadened by random potentials, and random Voronoi-Delaunay lattices in which (topological) disorder is introduced by bonds between randomly positioned sites. Based on a recursive Green function approach, we calculate the smallest positive Lyapunov exponent describing the long-range behavior of the wave function intensities along a quasi-one-dimensional lattice stripe. In both systems, we observe that the critical exponent of the localization length takes a value of ν≈2.60. Our critical estimates, thus, coincide with those based on the semi-classical Chalker-Coddington (CC) network model, see e.g. [1]. They do not agree with the reduced critical exponent, ν≈2.37, found by Gruzberg et al. in a recently proposed geometrically disordered CC model [2].
[1] K. Slevin and T. Ohtsuki, Phys. Rev. B 80, 041304 (2009)
[2] I. A. Gruzberg et al., Phys. Rev. B 95, 125414 (2017)
*This work was supported in part by the NSF under Grant Nos. PHY-1125915 and DMR-1506152.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.B07.8
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