Zhu Xiaojun, Li Shuai, Sun Ang, Pan Yongquan, Liu Wen, Wu Yue, Zhang Guoan, Shi Yuechun
School of Information Science and Technology, Nantong University, Nantong 226019, China.
Yongjiang Laboratory, Ningbo 315202, China and Nanjing University, Key Lab Intelligent Opt Sensing & Manipulat, Minist Educ, Nanjing University, Nanjing 210093, China.
Beilstein J Nanotechnol. 2023 Apr 6;14:478-484. doi: 10.3762/bjnano.14.38. eCollection 2023.
A mid-infrared (MIR) focusing grating coupler (FGC) with a single circular arc element (CAE) in the front of the gratings based on a germanium-on-silicon (Ge-on-Si) platform is designed and demonstrated. It can be used equivalently to a traditional FGC with all-focusing gratings. By optimizing the structural parameters of the CAE, the combination of a tapered linear grating and the CAE can improve the coupling efficiency to 8.61%, which is twice as large as that of the traditional MIR grating couplers. To the best of our knowledge, it is the highest coupling efficiency in a full-etch grating coupler based on Ge-on-Si. Moreover, the proposed grating coupler can be used for refractive index (RI) sensing, and the maximum sensitivity is 980.7 nm/RIU when the RI changes from 1 to 1.04. By comparing with traditional grating couplers requiring secondary etching, the proposed full-etch grating coupler structure can reduce the complexity of fabrication and can provide a prospective platform for MIR photonic integration and photonic biosensor detection.
设计并展示了一种基于硅基锗(Ge-on-Si)平台的中红外(MIR)聚焦光栅耦合器(FGC),其在光栅前方具有单个圆弧元件(CAE)。它可以等效地用作具有全聚焦光栅的传统FGC。通过优化CAE的结构参数,锥形线性光栅与CAE的组合可将耦合效率提高到8.61%,这是传统MIR光栅耦合器耦合效率的两倍。据我们所知,这是基于Ge-on-Si的全蚀刻光栅耦合器中最高的耦合效率。此外,所提出的光栅耦合器可用于折射率(RI)传感,当RI从1变化到1.04时,最大灵敏度为980.7 nm/RIU。与需要二次蚀刻的传统光栅耦合器相比,所提出的全蚀刻光栅耦合器结构可以降低制造复杂性,并可为MIR光子集成和光子生物传感器检测提供一个有前景的平台。