Ulloa P, Pacheco M, Latgé A
Departamento de Física, Universidad Técnica Federico Santa María, Casilla 110-V, Valparaíso, Chile.
J Phys Condens Matter. 2017 Nov 15;29(45):455304. doi: 10.1088/1361-648X/aa8dca. Epub 2017 Oct 19.
Here we present a theoretical study of the optical properties of graphene nanocones tuned by external electric and magnetic fields. We investigate the effects of the size and topology of the carbon nanostructures on the density of states and on the electro- and magneto-absorption of linearly polarized electromagnetic radiation in different nanocone geometries. We find that the electric field induces changes in the electric charge distribution mainly at the cone edges. In the infrared range the absorption coefficient shows a peculiar dependence on the electric field (magnitude and direction) and on the photon polarization for all investigated structures. Our results suggest that the electric field may be used to control the electric charge at the apex and for a selective light absorption. The presence of an axial magnetic field induces new features in the nanocone density of states due to the induced localization effects. For high fields the density of states exhibits a sequence of peaks resembling the graphene Landau spectra. The magneto-absorption spectra present a series of resonances strongly sensitive to the photon polarization opening routes for manipulation of the optical responses.
在此,我们展示了一项关于外部电场和磁场调控下石墨烯纳米锥光学性质的理论研究。我们研究了碳纳米结构的尺寸和拓扑结构对态密度以及不同纳米锥几何形状中线性偏振电磁辐射的电吸收和磁吸收的影响。我们发现,电场主要在锥边缘处引起电荷分布的变化。在红外范围内,对于所有研究的结构,吸收系数呈现出对电场(大小和方向)以及光子偏振的特殊依赖性。我们的结果表明,电场可用于控制顶点处的电荷并实现选择性光吸收。轴向磁场的存在由于诱导的局域化效应在纳米锥态密度中引发了新特征。对于强磁场,态密度呈现出一系列类似于石墨烯朗道光谱的峰。磁吸收光谱呈现出一系列对光子偏振高度敏感的共振,为操控光学响应开辟了途径。