arXiv · cond-mat/9812057
Conductance oscillations in tunnel-coupled quantum dots in the quantum Hall regime
Abstract
We present measurements of transport through two tunnel-coupled quantum dots of different sizes connected in series in a strong, variable, perpendicular magnetic field. Double dot conductance was measured both as a function of magnetic field, which was varied across the filling factor nu = 4 quantum Hall plateau, and as a function of charge induced evenly on the two dots. The conductance peaks undergo position shifts and height modulations as the magnetic field is varied. These shifts and modulations form a pattern that repeats over large ranges of magnetic field and with the addition of double dot charge. The robust pattern repetition is consistent with a frequency locking effect.
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C. Livermore, D. S. Duncan, R. M. Westervelt, K. D. Maranowski, A. C. Gossard. 1998-12-03. Conductance oscillations in tunnel-coupled quantum dots in the quantum Hall regime. https://doi.org/10.1103/physrevb.59.10744
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