多层碳材料的新局部赝势及其在波包动力学中的应用

IF 3.1 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Géza I. Márk , Péter Vancsó , Alexandre Mayer
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引用次数: 0

摘要

以前,我们创造了一个单电子局部伪势,在研究各种sp2碳纳米系统中的输运现象方面被证明是成功的,例如石墨烯晶界和纳米管网络。在这项工作中,我们提出了一个扩展版本的局部伪势,它正确地描述了范德华碳片堆叠的电子结构,例如AA, AB双层石墨烯,ABC(菱形)三层石墨烯,以及AA, AB和ABC石墨等,即使在外电场下也是如此。我们利用这一潜力来研究多层体系中石墨烯片之间波包的跳变动力学。跳频的频率与层间耦合引起的带分裂成正比。对于AB和ABC石墨烯,在费米能级附近存在反向散射,导致类似于齐特束的现象,即+kBloch和- kBloch态之间的干扰。对于菱形三层石墨烯,波包概率密度的时间依赖性对于第一层和第三层(两个外层)是一个非周期函数,但对于第二层(内层)是一个准周期函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New local pseudopotential for multilayer carbon materials and its application in wave packet dynamics

Formerly we created a one-electron local pseudopotential which proved to be successful in studying transport phenomena in various sp2 carbon nanosystems, e.g. graphene grain boundaries and nanotube networks. In this work, we present an extended version of the local pseudopotential which correctly describes the electronic structure of van der Waals stacks of carbon sheets, e.g. AA, AB bi-layer graphene, ABC (rhombohedral) tri-layer graphene, as well as AA, AB, and ABC graphite, etc., even in case of external electric fields. We utilize this potential to study the hopping dynamics of wave packets between the graphene sheets in multilayer systems. The frequency of the hopping is proportional to the band splitting, caused by the interlayer coupling. For the case of AB and ABC graphene there is a backscattering near the Fermi level, causing a Zitterbewegung-like phenomenon, an interference between +kBloch and kBloch states. For the rhombohedral tri-layer graphene the time dependence of the wave packet probability density is an aperiodic function for the first- and third layer (the two outer layers), but a quasi-periodic function for the second (inner) layer.

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来源期刊
Carbon Trends
Carbon Trends Materials Science-Materials Science (miscellaneous)
CiteScore
4.60
自引率
0.00%
发文量
88
审稿时长
77 days
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