From Small Lasers to Ultrathin Nonlinear Crystals

Xinfeng Liu
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引用次数: 1

Abstract

Small lasers are essential elements for the future integrated on-chip photonics, including lasers, sensors and high-volume data storage. In the first part, perovskite based small lasers (Fabry-Perot, WGM cavity) will be demonstrated. The advantages and disadvantages of perovskite serving as gain materials will be discussed. We also demonstrate the controlled growth of micro-laser array by using single layer BN as the buffer layer. On the other hand, different from the traditional very thick nonlinear crystal, we proposed that 2D Van der Waals crystal (3R MoS2) could be served as a promising ultra-thin frequency doubling crystal under the condition of phase matching. Thickness and wavelength dependent Second Harmonic Generation (SHG) spectrum of 3R MoS2 offer the selection rules of appropriate working conditions. Polarization enhancement with two petals along staggered stacking direction appears in 3R MoS2 were reported.
从小型激光器到超薄非线性晶体
小型激光器是未来集成片上光子学的基本要素,包括激光器、传感器和大容量数据存储。在第一部分中,将展示基于钙钛矿的小型激光器(Fabry-Perot, WGM腔)。讨论了钙钛矿作为增益材料的优缺点。我们还演示了用单层BN作为缓冲层来控制微激光阵列的生长。另一方面,与传统的极厚非线性晶体不同,我们提出了二维范德华晶体(3R MoS2)在相位匹配条件下可以作为超薄倍频晶体。3R二硫化钼的二次谐波产生(SHG)谱随厚度和波长的变化提供了合适工作条件的选择规则。在3R二硫化钼中出现了两瓣沿交错叠加方向的极化增强现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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