Physics – Condensed Matter – Mesoscale and Nanoscale Physics
Scientific paper
2010-12-18
Physical Review B 80, 235331 (2009)
Physics
Condensed Matter
Mesoscale and Nanoscale Physics
29 pages, 16 Figures
Scientific paper
In the present article we investigate the influence of the contact region on the distribution of the chemical potential in integer quantum Hall samples, as well as the longitudinal and Hall resistance as a function of the magnetic field. First we use a standard quantum Hall sample geometry and analyse the influence of the length of the leads where current enters/leaves the sample and the ratio of the contact width to the width of these leads. Furthermore we investigate potential barriers in the current injecting leads and the measurement arms in order to simulate non-ideal contacts. Second we simulate nonlocal quantum Hall samples with applied gating voltage at the metallic contacts. For such samples it has been found experimentally that both the longitudinal and Hall resistance as a function of the magnetic field can change significantly. Using the nonequilibrium network model we are able to reproduce most qualitative features of the experiments.
Oswald Josef
Stecher Christian
Uiberacker Christoph
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