论文标题

电气可调的第二次谐波生成原子稀薄的RES2

Electrically tunable second harmonic generation in atomically thin ReS2

论文作者

Wang, Jing, Han, Nannan, Luo, Zheng-Dong, Zhang, Mingwen, Chen, Xiaoqing, Liu, Yan, Hao, Yue, Zhao, Jianlin, Gan, Xuetao

论文摘要

光学材料中二阶非线性的电气调整对于增强和扩展非线性光学技术的功能具有吸引力,尽管其实现仍然难以捉摸。在这里,我们报告了原子薄的RES2薄片中可调的二阶非线性,其扭曲的1T晶体结构和层间电荷转移受益。通过对少数原子层RES2的有效静电控制启用,我们表明第二次谐波产生(SHG)可以在奇数层的RES2薄片中诱导,后者是中心对称的,因此可以诱导内在的SHG。此外,SHG可以通过电场进行精确调节,从几乎零转换为振幅比单层MOS2强的数量级多于一个数量级。对于具有内在SHG的偶数层RES2薄片,可以利用外部电场来增强SHG。我们进一步执行了第一原理计算,这表明在扭曲的1T晶体结构中重新分布的层间层中转移电荷对平面内二阶超极化性的修饰是RES2中电气可调的SHG的基础。使用其主动的SHG可调节性,同时使用宽敞的静电控制,我们的工作可能会进一步扩展二维材料的非线性光电函数,以开发电气可控的非线性光电设备。

Electrical tuning of second-order nonlinearity in optical materials is attractive to strengthen and expand the functionalities of nonlinear optical technologies, though its implementation remains elusive. Here, we report the electrically tunable second-order nonlinearity in atomically thin ReS2 flakes benefiting from their distorted 1T crystal structure and interlayer charge transfer. Enabled by the efficient electrostatic control of the few-atomic-layer ReS2, we show that second harmonic generation (SHG) can be induced in odd-number-layered ReS2 flakes which are centrosymmetric and thus without intrinsic SHG. Moreover, the SHG can be precisely modulated by the electric field, reversibly switching from almost zero to an amplitude more than one order of magnitude stronger than that of the monolayer MoS2. For the even-number-layered ReS2 flakes with the intrinsic SHG, the external electric field could be leveraged to enhance the SHG. We further perform the first-principles calculations which suggest that the modification of in-plane second-order hyperpolarizability by the redistributed interlayer-transferring charges in the distorted 1T crystal structure underlies the electrically tunable SHG in ReS2. With its active SHG tunability while using the facile electrostatic control, our work may further expand the nonlinear optoelectronic functions of two-dimensional materials for developing electrically controllable nonlinear optoelectronic devices.

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