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基于能谷光子晶体的中红外高Q值缺陷容忍谐振腔
Defect-Tolerant High-Q Mid-infrared Cavity Based on Valley Photonic Crystals
【摘要】 基于蜂窝状晶格能谷光子晶体结构,通过调控能谷自由度实现了一种中红外波段谐振腔结构。该结构的拓扑波导展现出优异的单向传输特性,在工作频段内前向传输效率接近1,同时有效抑制了背向散射。在此基础上构建的谐振腔在目标频段内品质因子达到5.59×10~4。相较于常规光子晶体谐振腔,其逆参与比显著降低,最低值可达1.6,且在目标频段内均低于2,模式场分布均匀性显著提升。此外,在引入结构缺陷的情况下,谐振腔的模式分布依然保持稳定,展现出优异的缺陷容忍特性。
【Abstract】 A mid-infrared cavity is implemented herein on a valley photonic crystal structure with a honeycomb lattice via manipulation of the valley degrees of freedom. The resulting topological waveguide designed considering this structure exhibits remarkable unidirectional transmission characteristics, achieving near-unity forward transmission efficiency within the operating frequency range while effectively suppressing backward scattering. The cavity constructed on the basis of this design achieves a quality factor of 5. 59×10~4 within the target frequency range. When compared to conventional photonic crystal cavities, this mid-infrared cavity exhibits a significantly lower inverse participation ratio that reaches as low as 1. 6 and consistently remains below 2 within the target frequency range. This results in significant mode field distribution uniformity. Moreover, the mode distribution of the cavity remains stable even when structural defects are introduced.
【Key words】 valley photonic crystals; topological edge state; mid-infrared range; defect-tolerant;
- 【文献出处】 半导体光电 ,Semiconductor Optoelectronics , 编辑部邮箱 ,2025年03期
- 【分类号】O43
- 【下载频次】6