Raj Panday Suman, Fregoso Benjamin M
Department of Physics, Kent State University, Kent, OH 44242, United States of America.
J Phys Condens Matter. 2017 Nov 1;29(43):43LT01. doi: 10.1088/1361-648X/aa8bfc.
The two-dimensional ferroelectrics GeS, GeSe, SnS and SnSe are expected to have large spontaneous in-plane electric polarization and enhanced shift-current response. Using density functional methods, we show that these materials also exhibit the largest effective second harmonic generation reported so far. It can reach magnitudes up to [Formula: see text] which is about an order of magnitude larger than that of prototypical GaAs. To rationalize this result we model the optical response with a simple one-dimensional two-band model along the spontaneous polarization direction. Within this model the second-harmonic generation tensor is proportional to the shift-current response tensor. The large shift current and second harmonic responses of GeS, GeSe, SnS and SnSe make them promising non-linear materials for optoelectronic applications.
二维铁电体GeS、GeSe、SnS和SnSe有望具有较大的面内自发极化和增强的频移电流响应。利用密度泛函方法,我们表明这些材料还展现出了迄今为止报道的最大有效二次谐波产生。其幅度可达[公式:见原文],比典型的GaAs大一个数量级左右。为合理解释这一结果,我们沿自发极化方向用一个简单的一维双带模型对光学响应进行建模。在该模型中,二次谐波产生张量与频移电流响应张量成正比。GeS、GeSe、SnS和SnSe的大频移电流和二次谐波响应使其成为有前景的用于光电子应用的非线性材料。