Quantum transport in armchair graphene ribbons: analytical tight-binding solutions for propagation through step-like and barrier-like potentials |
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Authors: | Yu. O. Klymenko and O. Shevtsov |
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Affiliation: | (1) Space Research Institute of NAS and NSA of Ukraine, 03680 Kyiv, Ukraine;(2) National Taras Shevchenko University of Kyiv, 03680 Kyiv, Ukraine |
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Abstract: | Based on the nearest-neighbor tight-binding approximation, we present exact analytical expressions for transmission coefficients through piecewise constant step-like and barrier-like electrostatic potentials. In the case of single mode propagation through semiconducting ribbon families our analytical solutions predict a new kind of resonances. Its features substantially change the behavior of the transmission coefficients in the range of moderate potentials, which become family-dependent. For semimetal ribbons our approach predicts no unit propagation. The non-zero backscattering is derived to be proportional as the square of the potential amplitude applied. |
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Keywords: | PACS 72.10.-d Theory of electronic transport scattering mechanisms 73.63.-b Electronic transport in nanoscale materials and structures 73.63.Nm Quantum wires |
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