Department of Solid State Physics, Faculty of Physics and Applied Informatics, University of Łódź, Łódź, Poland.
J Phys Condens Matter. 2013 Apr 24;25(16):166001. doi: 10.1088/0953-8984/25/16/166001. Epub 2013 Apr 3.
A form of indirect Ruderman-Kittel-Kasuya-Yosida (RKKY)-like coupling between magnetic on-site impurities in armchair graphene nanoribbons is studied theoretically. The calculations are based on a tight-binding model for a finite nanoribbon system with periodic boundary conditions. A pronounced Friedel-oscillation-like dependence of the coupling magnitude on the impurity position within the nanoribbon resulting from quantum size effects is found and investigated. In particular, the distance dependence of coupling is analysed. For semiconducting nanoribbons, this dependence is exponential-like, resembling the Bloembergen-Rowland interaction. For metallic nanoribbons, interesting behaviour is found for finite length systems, in which zero-energy states make an important contribution to the interaction. In such situations, the coupling decay with distance can then be substantially slower.
本文理论研究了扶手椅型石墨烯纳米带中磁局域杂质间的一种间接 Ruderman-Kittel-Kasuya-Yosida(RKKY)类似耦合形式。计算基于具有周期性边界条件的有限纳米带系统的紧束缚模型。发现并研究了由于量子尺寸效应导致的耦合强度对纳米带内杂质位置的明显的 Friedel 振荡样依赖性。特别是,分析了耦合的距离依赖性。对于半导体纳米带,这种依赖性类似于指数,类似于 Bloembergen-Rowland 相互作用。对于金属纳米带,对于有限长度系统,会发现有趣的行为,其中零能态对相互作用有重要贡献。在这种情况下,与距离的耦合衰减可以慢得多。