Coupled nano-rings: strain and magnetic field effects

E. Hedin, M. Orvis, Y. S. Joe
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引用次数: 0

Abstract

Transmission properties of a linear chain of nanorings with 6 quantum dots (QD) per ring are investigated with and without magnetic field effects. The rings are connected serially by a linear segment. A tightbinding Hamiltonian is solved exactly, giving the transmission for any number of rings in series. The Aharonov-Bohm effect shifts and splits the transmission band structure and the Zeeman effect splits the transmission into spin-polarized bands. Multiple system parameters, including coupling integrals and ring number, are varied and shown to have significant effects on the transmission spectrum. The system and results provide generalized conduction properties of a 1-ring wide graphene nanoribbon in the armchair configuration.
耦合纳米环:应变和磁场效应
研究了每环有6个量子点的线性纳米链在磁场作用下和无磁场作用下的传输特性。这些环通过一条线段串联起来。一个紧密结合的哈密顿量被精确地解出,给出了任意数量环串联的传输。Aharonov-Bohm效应使传输带结构发生位移和分裂,Zeeman效应使传输带分裂为自旋极化带。耦合积分和环数等多个系统参数会发生变化,并对传输频谱产生显著影响。该系统和结果提供了扶手椅结构中1环宽石墨烯纳米带的广义导电特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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