Pan Ting, Qiu Ciyuan, Wu Jiayang, Jiang Xinhong, Liu Boyu, Yang Yuxing, Zhou Huanying, Soref Richard, Su Yikai
Opt Express. 2015 Sep 7;23(18):23357-64. doi: 10.1364/OE.23.023357.
We propose and numerically study an on-chip graphene-silicon hybrid electro-optic (EO) modulator operating at the telecommunication band, which is implemented by a compact 1D photonic crystal nanobeam (PCN) cavity coupled to a bus waveguide with a graphene sheet on top. Through electrically tuning the Fermi level of the graphene, both the quality factor and the resonance wavelength can be significantly changed, thus the in-plane lightwave can be efficiently modulated. Based on finite-difference time-domain (FDTD) simulation results, the proposed modulator can provide a large free spectral range (FSR) of 125.6 nm, a high modulation speed of 133 GHz, and a large modulation depth of ~12.5 dB in a small modal volume, promising a high performance EO modulator for wavelength-division multiplexed (WDM) optical communication systems.
我们提出并通过数值研究了一种工作在电信波段的片上石墨烯-硅混合电光(EO)调制器,它由一个紧凑的一维光子晶体纳米光束(PCN)腔实现,该腔与顶部有石墨烯片的总线波导耦合。通过电调谐石墨烯的费米能级,品质因数和共振波长都可以显著改变,从而可以有效地调制面内光波。基于时域有限差分(FDTD)模拟结果,所提出的调制器在小模式体积下可提供125.6 nm的大自由光谱范围(FSR)、133 GHz的高调制速度和约12.5 dB的大调制深度,有望成为用于波分复用(WDM)光通信系统的高性能EO调制器。