Li Renjie, Chen Ming, Shi Xinyu, Han Wenhao, Wang Xiangyang, Zhao Wanli, Liu Jinbiao, Teng Chuanxin, Deng Shijie, Cheng Yu, Yuan Libo
Appl Opt. 2023 Oct 1;62(28):7346-7353. doi: 10.1364/AO.498890.
Electro-optic modulators are essential devices on silicon photonic chips in modern optical communication networks. This paper presents a compact, low-loss electro-optic modulator. The modulation efficiency is greatly improved by embedding the lower half of the slot waveguide into the buried oxide layer and inserting graphene at the junction. The interaction of graphene with an optical field in a waveguide is studied using the finite element method. The functions of phase modulation and absorption modulation are realized by changing the gate voltage to change the chemical potential of graphene. The semi-embedded slot waveguide optical modulator has a length of 50 µm. After simulation verification, it can be used as an electro-absorption modulator and can achieve a modulation depth of 26.38 dB and an insertion loss of 0.60 dB. When used as an electro-refractive modulator, it can be realized with a linear change of phase from zero to ; the total insertion loss is only 0.59 dB. The modulator has a modulation bandwidth of 79.6 GHz, and the energy consumption as electro-absorption and electro-refraction modulation are 0.51 and 1.92 pj/bit, respectively. Compared with common electro-optic modulators, the electro-optic modulator designed in this paper has a higher modulation effect and also takes into account the advantages of low insertion loss and low energy consumption. This research is helpful for the design of higher-performance optical communication network devices.
电光调制器是现代光通信网络中硅光子芯片上的关键器件。本文提出了一种紧凑、低损耗的电光调制器。通过将槽型波导的下半部分嵌入掩埋氧化物层并在结处插入石墨烯,调制效率得到了极大提高。利用有限元方法研究了石墨烯与波导中光场的相互作用。通过改变栅极电压来改变石墨烯的化学势,实现了相位调制和吸收调制功能。半嵌入式槽型波导光调制器长度为50 µm。经过仿真验证,它可用作电吸收调制器,可实现26.38 dB的调制深度和0.60 dB的插入损耗。当用作电光调制器时,可实现相位从零到的线性变化;总插入损耗仅为0.59 dB。该调制器的调制带宽为79.6 GHz,电吸收调制和电光调制的能耗分别为0.51和1.92 pj/bit。与普通电光调制器相比,本文设计的电光调制器具有更高的调制效果,同时兼顾了低插入损耗和低能耗的优点。本研究有助于高性能光通信网络器件的设计。