Biswas Rabindra, Dandu Medha, Menon Sruti, Jha Keshav Kumar, K M Jyothsna, Majumdar Kausik, Raghunathan Varun
Opt Express. 2019 Sep 30;27(20):28855-28865. doi: 10.1364/OE.27.028855.
Two-dimensional layered materials are in general known to exhibit strong layer dependent nonlinear optical response owing to the crystal symmetry and associated phase matching considerations. Here we report up-conversion of 1550 nm incident light using third-harmonic generation (THG) in multilayered tin di-selenide (SnSe) and study its thickness dependence by simultaneously acquiring spatially-resolved images in the forward and backward propagation direction. We find good agreement between the experimental measurements and a coupled-wave equation model we have developed when including the effect of Fabry-Perot interference between the SnSe layer and the surrounding medium. We extract the magnitude of the third order electronic nonlinear optical susceptibility of SnSe, for the first time to our knowledge, by comparing its nonlinear response with a glass substrate and find this to be ∼1500 times higher than that of glass. We also study the polarization dependence and find good agreement with the expected angular dependence of nonlinear polarization considering the crystal symmetry of SnSe. The large nonlinear optical susceptibility of multi-layer SnSe makes it a promising material for studying nonlinear optical effects. This work demonstrates that in addition to the large inherent nonlinear optical susceptibility, the high refractive index of these materials and optical absorption above the bandgap strongly influence the overall nonlinear optical response and its thickness dependence characteristics.
由于晶体对称性和相关的相位匹配考虑因素,二维层状材料通常表现出强烈的层依赖性非线性光学响应。在此,我们报道了在多层二硒化锡(SnSe)中利用三次谐波产生(THG)实现1550nm入射光的上转换,并通过同时获取向前和向后传播方向上的空间分辨图像来研究其厚度依赖性。我们发现,当考虑SnSe层与周围介质之间的法布里 - 珀罗干涉效应时,实验测量结果与我们开发的耦合波方程模型之间具有良好的一致性。据我们所知,首次通过将SnSe的非线性响应与玻璃基板进行比较,提取了SnSe的三阶电子非线性光学极化率的大小,发现其比玻璃高约1500倍。我们还研究了偏振依赖性,并且考虑到SnSe的晶体对称性,发现与非线性偏振的预期角度依赖性具有良好的一致性。多层SnSe的大非线性光学极化率使其成为研究非线性光学效应的有前途的材料。这项工作表明,除了固有的大非线性光学极化率之外,这些材料的高折射率和带隙以上的光吸收强烈影响整体非线性光学响应及其厚度依赖性特征。