Li Qiyuan, Xiong Xinzhe, Yan Zhiwei, Cheng Guanglian, Xu Fanglu, Shen Zengfan, Yi Qiyuan, Yu Yu, Shen Li
Opt Express. 2023 Aug 28;31(18):29523-29535. doi: 10.1364/OE.496269.
The mid-infrared (MIR) region is attracting increasing interest for on-chip synchronous detection and free-space optical (FSO) communications. For such applications, a high-performance electro-optical modulator is a crucial component. In this regard, we propose and investigate a graphene-based electro-absorption modulator (EAM) and microring modulator (MRM) using the suspended germanium waveguide platform. The modulators are designed for the second atmospheric window (8 to 12 µm). The incorporation of double-layer graphene on the suspended slot waveguide structure allows for the significant enhancement of light-graphene interaction, theoretically achieving a 3-dB bandwidth as high as 78 GHz. The EAM shows a calculated modulation depth of 0.022-0.045 dB/µm for the whole operation wavelength range. The MRM exhibits a calculated extinction ratio as high as 68.9 dB and a modulation efficiency of 0.59 V·cm around 9 µm. These modulators hold promise for constructing high-speed FSO communication and on-chip spectroscopic detection systems in the MIR atmospheric window.
中红外(MIR)区域在片上同步检测和自由空间光(FSO)通信方面正吸引着越来越多的关注。对于此类应用,高性能电光调制器是关键部件。在这方面,我们提出并研究了一种基于石墨烯的电吸收调制器(EAM)和微环调制器(MRM),其采用悬浮锗波导平台。这些调制器针对第二个大气窗口(8至12微米)进行设计。在悬浮狭缝波导结构上引入双层石墨烯可显著增强光与石墨烯的相互作用,理论上实现高达78吉赫兹的3分贝带宽。对于整个工作波长范围,EAM的计算调制深度为0.022 - 0.045分贝/微米。MRM在9微米左右表现出高达68.9分贝的计算消光比和0.59伏·厘米的调制效率。这些调制器有望用于构建中红外大气窗口中的高速FSO通信和片上光谱检测系统。