arXiv · 0907.5262
Coherent magnetotransport and time-dependent transport through split-gated quantum constrictions
Abstract
The authors report on modeling of transport spectroscopy in split-gate controlled quantum constrictions. A mixed momentum-coordinate representation is employed to solve a set of time-dependent Lippmann-Schwinger equations with intricate coupling between the subbands and the sidebands. Our numerical results show that the transport properties are tunable by adjusting the ac-biased split-gates and the applied perpendicular magnetic field. We illustrate time-modulated quasibound-state features involving inter-sideband transitions and the Aharonov-Bohm oscillation characteristics in the split-gated systems.
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Kristinn Torfason, Chi-Shung Tang, Vidar Gudmundsson. 2009-07-30. Coherent magnetotransport and time-dependent transport through split-gated quantum constrictions. https://doi.org/10.1103/physrevb.80.195322
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