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The dynamical conductance of graphene tunnelling structures

机译:石墨烯隧穿结构的动态电导

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The dynamical conductances of graphene tunnelling structures were numerically calculated using the scattering matrix method with the interaction effect included in a phenomenological approach. The overall single-barrier dynamical conductance is capacitative. Transmission resonances in the single-barrier structure lead to dips in the capacitative imaginary part of the response. This is different from the ac responses of typical semiconductor nanostructures, where transmission resonances usually lead to inductive peaks. The features of the dips depend on the Fermi energy. When the Fermi energy is below half of the barrier height, the dips are sharper. When the Fermi energy is higher than half of the barrier height, the dips are broader. Inductive behaviours can be observed in a double-barrier structure due to the resonances formed by reflection between the two barriers.
机译:石墨烯隧穿结构的动态电导率是使用散射矩阵法数值计算的,其中相互作用效应包含在现象学方法中。整体的单壁垒动态电导是电容性的。单势垒结构中的传输共振导致响应的电容性虚部下降。这与典型的半导体纳米结构的交流响应不同,在典型的半导体纳米结构中,传输共振通常会导致感应峰。倾角的特征取决于费米能量。当费米能量低于势垒高度的一半时,倾角会变陡。当费米能量高于势垒高度的一半时,下降幅度会变大。由于两个势垒之间的反射而形成共振,因此可以在双势垒结构中观察到电感行为。

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