Wang Jinjin, Guo Yanrong, Shen Hong, Chen Yu-Yo, Zhang Rongjun, Zheng Yuxiang, Chen Liangyao, Wang Songyou, Jia Yu, Chen Hong-Yi, Su Wan-Sheng
Shanghai Ultra-Precision Optical Manufacturing Engineering Center and Department of Optical Science and Engineering, Fudan University Shanghai 200433 China
Department of Physics, National Taiwan Normal University Taipei 10647 Taiwan.
RSC Adv. 2019 Dec 17;9(71):41703-41708. doi: 10.1039/c9ra08515g. eCollection 2019 Dec 13.
First-principles calculations are employed to study the optical properties of monolayer Te tuned by biaxial strain. Our results demonstrate that monolayer Te has strong absorption in the visible and ultraviolet regions, and that a structural transition occurs between the α-phase and the β-phase under certain strain. In addition, there is significant optical anisotropy in α- and β-Te, while γ-Te shows isotropic characteristics due to their different structural properties. Furthermore, strain has a significant impact on the optical properties. With increasing strain, the real and imaginary parts of the dielectric function exhibit redshift. In addition, the absorption spectrum is more likely to be excited under compressive strain rather than tensile strain in α- and β-Te, while only slight differences are induced in γ-Te. These findings can not only enhance the understanding of two-dimensional tellurium, but also provide an effective way to tune the optical properties for potential application in optoelectronic devices.
采用第一性原理计算方法研究双轴应变调控下的单层碲的光学性质。我们的结果表明,单层碲在可见光和紫外区域有很强的吸收,并且在一定应变下α相和β相之间会发生结构转变。此外,α-Te和β-Te存在显著的光学各向异性,而γ-Te由于其不同的结构性质表现出各向同性特征。此外,应变对光学性质有显著影响。随着应变增加,介电函数的实部和虚部出现红移。另外,在α-Te和β-Te中,吸收光谱在压缩应变下比拉伸应变下更易被激发,而在γ-Te中仅引起微小差异。这些发现不仅能增进对二维碲的理解,还为调控光学性质以用于光电器件的潜在应用提供了有效途径。