Ning Tingyin, Li Xin, Zhang Zhongshuai, Huo Yanyan, Yue Qingyang, Zhao Lina, Gao Yuanmei
Opt Express. 2021 May 24;29(11):17286-17294. doi: 10.1364/OE.427355.
We investigate second harmonic generation (SHG) in all-dielectric resonance nanostructures of high-Q factors assisted by quasi-bound states in the continuum (quasi-BICs). The typical resonators, e.g., guided-mode resonance gratings and asymmetric metasurfaces, fabricated by AlGaAs were numerically studied with the consideration of nonlinear refraction of AlGaAs. The resonance peak and line-shape of linear transmission and SHG spectra in the resonators can be dramatically changed under intense pump intensities. The SHG conversion efficiency in the nanostructures working at quasi-BICs is much lower than the traditionally expected values without considering the nonlinear refraction of dielectrics. The ultimate SHG conversion efficiency is finally obtained. The investigation has the significance for the design and understanding of efficient nonlinear metasurfaces of high-Q factors.
我们研究了在连续谱中的准束缚态(准BICs)辅助下的高Q因子全介质共振纳米结构中的二次谐波产生(SHG)。通过考虑AlGaAs的非线性折射,对由AlGaAs制造的典型谐振器,如导模共振光栅和非对称超表面进行了数值研究。在强泵浦强度下,谐振器中线性传输和SHG光谱的共振峰和线形会发生显著变化。在准BICs下工作的纳米结构中的SHG转换效率远低于不考虑电介质非线性折射时传统预期的值。最终获得了极限SHG转换效率。该研究对于设计和理解高Q因子的高效非线性超表面具有重要意义。