Wu Chenghan, Reep Tom, Brems Steven, Jussot Julien, Mootheri Vivek, Van Campenhout Joris, Huyghebaert Cedric, Pantouvaki Marianna, Wang Zheng, Van Thourhout Dries
Opt Express. 2023 Oct 23;31(22):36872-36882. doi: 10.1364/OE.503140.
This paper presents an experimental and theoretical investigation of a graphene-integrated electro-absorption modulator (EAM) based on a slot waveguide. Due to the enhanced light-matter interaction of graphene, the device exhibits an impressive modulation efficiency (0.038 dBµmV) and bandwidth (≈ 16 GHz). Starting from these results, we carried out an extensive design study, focusing on three crucial design parameters and exploring the associated trade-offs in insertion loss, extinction ratio and bandwidth. The simulation results offer valuable insights into the influence of each design parameter, reaffirming that our slot waveguide platform holds great promise for realizing a high-performance EAM balancing optical and electrical performance. It is important to note that the slot waveguide was defined through standard deep ultraviolet (DUV) lithography, allowing seamless integration into high-density systems.
本文介绍了一种基于槽型波导的集成石墨烯电光吸收调制器(EAM)的实验和理论研究。由于石墨烯增强了光与物质的相互作用,该器件展现出令人印象深刻的调制效率(0.038 dBµmV)和带宽(约16 GHz)。基于这些结果,我们开展了广泛的设计研究,重点关注三个关键设计参数,并探讨了插入损耗、消光比和带宽之间的相关权衡。仿真结果为每个设计参数的影响提供了有价值的见解,再次证明我们的槽型波导平台在实现平衡光学和电学性能的高性能EAM方面具有巨大潜力。需要注意的是,槽型波导是通过标准深紫外(DUV)光刻定义的,能够无缝集成到高密度系统中。