Abdi Mona, Astinchap Bandar
Department of Physics, Faculty of Science, University of Kurdistan, 66177-15175 Sanandaj, Kurdistan, Iran.
Research Center for Nanotechnology, University of Kurdistan, 66177-15175 Sanandaj, Kurdistan, Iran.
J Phys Condens Matter. 2023 Aug 23;35(46). doi: 10.1088/1361-648X/acee40.
In this research, we use the tight-binding model, which includes spin-orbit coupling and an external magnetic field, to describe the optical properties of the methyl-substituted germanane (GeCH) monolayer. We have applied the Kubo formula, linear response theory, and Green's function approach to calculate the optical absorption coefficient of the GeCHmonolayer. Here, the effects of an external magnetic field, strain, spin-orbit coupling, temperature, and electron/hole doping on the frequency dependence behavior of the optical conductivity have been investigated in detail. Our numerical results show that with increasing the external magnetic field, strain, and electron doping, the weight of the Drude increases. The optical absorption peak decreases and shifts to higher frequencies by applying an external magnetic field, strain, and electron doping. Controlling the optical and electronic properties of GeCHis leading to use this structure it in the electronic and optoelectronic industries.
在本研究中,我们使用包含自旋轨道耦合和外部磁场的紧束缚模型来描述甲基取代锗烷(GeCH)单层的光学性质。我们应用久保公式、线性响应理论和格林函数方法来计算GeCH单层的光吸收系数。在此,详细研究了外部磁场、应变、自旋轨道耦合、温度以及电子/空穴掺杂对光导率频率依赖行为的影响。我们的数值结果表明,随着外部磁场、应变和电子掺杂的增加,德鲁德权重增加。通过施加外部磁场、应变和电子掺杂,光吸收峰降低并向更高频率移动。控制GeCH的光学和电子性质有助于将该结构应用于电子和光电子行业。