Su Peng, Ye Han, Sun Naizhang, Liu Shining, Zhang Hu
State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China.
Nanomaterials (Basel). 2023 Jul 24;13(14):2150. doi: 10.3390/nano13142150.
Due to the unique optical responses induced by vertical atomic asymmetry inside a monolayer, two-dimensional Janus structures have been conceived as promising building blocks for nanoscale optical devices. In this paper, second harmonic generation (SHG) in Janus transition metal chalcogenide oxide monolayers is systematically investigated by the first-principles calculations. Second-order nonlinear susceptibilities are theoretically determined for Janus MXO (M = Mo/W, X = S/Se/Te) monolayers. The calculated values are comparable in magnitude with Janus MoSSe monolayer. X-M-O symmetry breaking leads to non-zero components in vertical direction, compared with the non-Janus structure. Focusing on the SHG induced by incident light at 1064 nm, polarization-dependent responses of six Janus MXO monolayers are demonstrated. The symmetry of p-polarization changes from six-fold to three-fold with acute incidence angle. Moreover, the effects of biaxial strain on band structures and SHG are further investigated, taking MoSO as an exemplary case. We expect these results to bring in recipes for designing nonlinear optical devices based on Janus transition metal chalcogenide oxide monolayers.
由于单层内垂直原子不对称性引起的独特光学响应,二维Janus结构被认为是纳米级光学器件的有前途的构建块。本文通过第一性原理计算系统地研究了Janus过渡金属硫族化物氧化物单层中的二次谐波产生(SHG)。从理论上确定了Janus MXO(M = Mo/W,X = S/Se/Te)单层的二阶非线性极化率。计算值在大小上与Janus MoSSe单层相当。与非Janus结构相比,X-M-O对称性破缺导致垂直方向上的非零分量。聚焦于1064 nm入射光诱导的SHG,展示了六种Janus MXO单层的偏振依赖响应。p偏振的对称性随着入射角变锐从六重变为三重。此外,以MoSO为例,进一步研究了双轴应变对能带结构和SHG的影响。我们期望这些结果为基于Janus过渡金属硫族化物氧化物单层设计非线性光学器件提供方法。