论文标题
扶手椅石墨烯纳米替宾异质结构中的铁磁性
Ferromagnetism in armchair graphene nanoribbon heterostructures
论文作者
论文摘要
我们研究了由不同宽度的石墨烯扶手椅纳米管组成的异质结构中出现的扁平带的性能。其中一种平坦的是让人联想到原始扶手椅纳米管中出现的,并起源于量子机械的破坏性干扰效应,并被Lin等人称为“ Wannier Orbital State”。在物理中。 Rev. B 79,035405(2009)。在这些异质结构中发现的其他平坦频带似乎是通过类似的干扰过程生成的,这似乎是更接近费米水平的。在对不同类型异质结构的带状结构进行了彻底的紧密结合分析之后,集中在平坦的特性上,我们使用密度功能理论来研究磁接地态在通过掺杂,接近不同平坦频段的费米能量时的可能性。我们的DFT结果证实了人们期望这些异质结构在适当的孔掺杂后形成了似乎需要的铁磁基态,就像原始扶手椅纳米骨架一样,存在越过平坦频段的分散带。此外,我们发现了所谓的轨道轨道状态的电荷密度分布的紧密结合和DFT结果之间的显着一致性。
We study the properties of flat-bands that appear in a heterostructure composed of strands of different widths of graphene armchair nanoribbons. One of the flat-bands is reminiscent of the one that appears in pristine armchair nanoribbons and has its origin in a quantum mechanical destructive interference effect, dubbed `Wannier orbital states' by Lin et al. in Phys. Rev. B 79, 035405 (2009). The additional flat-bands found in these heterostructures, some reasonably closer to the Fermi level, seem to be generated by a similar interference process. After doing a thorough tight-binding analysis of the band structures of the different kinds of heterostructures, focusing in the properties of the flat-bands, we use Density Functional Theory to study the possibility of magnetic ground states when placing, through doping, the Fermi energy close to the different flat-bands. Our DFT results confirmed the expectation that these heterostructures, after being appropriately hole-doped, develop a ferromagnetic ground state that seems to require, as in the case of pristine armchair nanoribbons, the presence of a dispersive band crossing the flat-band. In addition, we found a remarkable agreement between the tight-binding and DFT results for the charge density distribution of the so-called Wannier orbital states.