铌酸锂
二次谐波产生
波长
材料科学
超材料
光电子学
非线性光学
激发
能量转换效率
纳米结构
光学
飞秒
物理
激光器
纳米技术
量子力学
作者
Yang Li,Zhijin Huang,Zhan Sui,Huajiang Chen,Xinyue Zhang,Weian Huang,Heyuan Guan,Wentao Qiu,Jiangli Dong,Wenguo Zhu,Jianhui Yu,Huihui Lu,Zhe Chen,Yang Li,Zhijin Huang,Zhan Sui,Huajiang Chen,Xinyue Zhang,Weian Huang,Heyuan Guan
出处
期刊:Nanophotonics
[De Gruyter]
日期:2020-06-29
卷期号:9 (11): 3575-3585
被引量:83
标识
DOI:10.1515/nanoph-2020-0222
摘要
Abstract Second harmonic generation (SHG) with a material of large transparency is an attractive way of generating coherent light sources at exotic wavelength range such as VUV, UV and visible light. It is of critical importance to improve nonlinear conversion efficiency in order to find practical applications in quantum light source and high resolution nonlinear microscopy, etc. Here an enhanced SHG with conversion efficiency up to 10 −2 % at SH wavelength of 282.7 nm under 11 GW/cm 2 pump intensity via the excitation of anapole in lithium niobite (LiNbO 3 , or LN) nanodisk through the dominating d 33 nonlinear coefficient is investigated. The anapole has advantages of strongly suppressing far-field scattering and well-confined internal field which helps to boost the nonlinear conversion. Anapoles in LN nanodisk is facilitated by high index contrast between LN and substrate with properties of near-zero-index via hyperbolic metamaterial structure design. By tailoring the multi-layers structure of hyperbolic metamaterials, the anapole excitation wavelength can be tuned at different wavelengths. It indicates that an enhanced SHG can be achieved at a wide range of pump light wavelengths via different design of the epsilon-near-zero (ENZ) hyperbolic metamaterials substrates. The proposed nanostructure in this work might hold significances for the enhanced light–matter interactions at the nanoscale such as integrated optics.
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