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首页> 外文期刊>Physica, B. Condensed Matter >Resonant states in heterostructures of graphene nanoribbons
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Resonant states in heterostructures of graphene nanoribbons

机译:石墨烯纳米带异质结构的共振态

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摘要

We study the transport properties of heterostructures of armchair graphene nanoribbons (AGNR) forming a double symmetrical barrier configuration. The systems are described by a single-band tight-binding Hamiltonian and Green's functions formalism, based on real-space renormalization techniques. We present results for the quantum conductance and the current for distinct configurations, focusing our analysis on the dependence of the transport with geometrical effects such as separation, width and transverse dimension of the barriers. Our results show the apparition of a series of resonant peaks in the conductance, showing a clear evidence of the presence of resonant states in the conductor. Changes in the barrier dimensions allow the modulation of the resonances in the conductance, making possible to obtain a complete suppression of electron transmission for determined values of the Fermi energy. The current-voltage curves show the presence of a negative differential resistance effect with a threshold voltage that can be controlled by varying the separation between the barriers and by modulating its confinement potential.
机译:我们研究形成双对称势垒构型的扶手椅石墨烯纳米带(AGNR)的异质结构的传输性能。该系统由单带紧结合的汉密尔顿函数和格林函数形式主义描述,基于实空间重归一化技术。我们介绍了不同结构的量子电导和电流的结果,将我们的分析重点放在了具有几何效应(例如,势垒的间距,宽度和横向尺寸)的传输依赖性上。我们的结果表明,电导中出现了一系列共振峰,这清楚地表明了导体中存在共振态。势垒尺寸的变化允许电导谐振的调制,从而对于确定的费米能量值,可以完全抑制电子传输。电流-电压曲线表明存在负差分电阻效应,该效应具有阈值电压,可以通过改变势垒之间的间隔并通过调节其限制电位来控制该阈值电压。

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