Huang Bao-Hu, Lu Wei-Bing, Li Xiao-Bing, Wang Jian, Liu Zhen-Guo
Appl Opt. 2016 Jul 20;55(21):5598-602. doi: 10.1364/AO.55.005598.
In this paper, we propose a low-transmission-loss, high-speed, graphene-based electro-absorption modulator with a hybrid plasmonic waveguide at 1.55 μm. In the proposed device, double-layer graphene is placed on top of the horizontal hybrid plasmonic waveguide to enhance the light-graphene interaction. The adjustment of the in-plane permittivity of the anisotropy graphene causes a significant modulation of the absorption at the operating bandwidth of 0.4 THz, with modulation length of 8.5 μm and modulator footprint of 1.6 μm. A taper silicon coupler is used for waveguide coupling, and 80% coupling efficiency is achieved. In addition, the modulation potential on a smaller footprint is further shown.
在本文中,我们提出了一种基于石墨烯的低传输损耗、高速电吸收调制器,其采用了在1.55μm波长下工作的混合等离子体波导。在所提出的器件中,双层石墨烯置于水平混合等离子体波导之上,以增强光与石墨烯的相互作用。对各向异性石墨烯面内介电常数的调节,在0.4THz的工作带宽内引起了显著的吸收调制,调制长度为8.5μm,调制器占地面积为1.6μm。采用锥形硅耦合器进行波导耦合,实现了80%的耦合效率。此外,还展示了在更小占地面积上的调制潜力。