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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >Localized and quasi-localized energy levels in the electron spectrum of graphene with isolated boron and nitrogen substitutions
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Localized and quasi-localized energy levels in the electron spectrum of graphene with isolated boron and nitrogen substitutions

机译:石墨烯电子光谱中的局域和准局域能级与孤立的硼和氮取代

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摘要

Based on the calculation and analysis of local Green's functions of impurity atoms of low concentration in a two-dimensional graphene lattice, the conditions for the formation and characteristics of local discrete levels with energies lying outside the band of the quasi-continuous spectrum and quasi-localized states with energies near the Fermi one are determined. Specific calculations were performed for boron and nitrogen impurity atoms, which can actually replace carbon in graphite and graphene nanostructures. For a boron impurity that forms local discrete levels outside the band of the quasi-continuous spectrum, sufficiently simple analytical expressions for the conditions for their formation, energy, intensity at the impurity atom, and damping parameter are obtained. An analysis of the formation of states quasi-localized on nitrogen impurities with energy near the Fermi level in graphene nanostructures was carried out.
机译:基于当地的计算和分析格林函数的杂质原子的低在一个二维石墨烯浓度为形成和晶格,条件当地的离散程度的特征能量躺在外面的乐队准连续频谱和quasi-localized州费米是附近的能量确定。硼和氮杂质原子,它可以实际上取代碳石墨和石墨烯纳米结构。局部离散带以外的水平准连续光谱,足够简单条件的解析表达式它们的形成、能源强度的杂质原子,和阻尼参数获得的。quasi-localized在氮杂质能源费米能级附近的石墨烯纳米结构。

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