Wu Xiaoxuan, Cao Zhengyi, Zhao Tianxiang, Wu Yun, Li Zhonghui, Doukas Spyros, Lidorikis Elefterios, Xue Yu, Liu Liu, Ghaebi Omid, Soavi Giancarlo, Lu Junpeng, Ni Zhenhua, Wang Junjia
National Research Center for Optical Sensors/Communications Integrated Networks, School of Electronic Science and Engineering, Southeast University, Nanjing 210096, China.
CETC Key Laboratory of Carbon-based Electronics, Nanjing Electronic Devices Institute, Nanjing 210016, China.
Nanoscale Horiz. 2024 Jul 22;9(8):1372-1378. doi: 10.1039/d4nh00160e.
Graphene modulators are considered a potential solution for achieving high-efficiency light modulation, and graphene-silicon hybrid-integrated modulators are particularly favorable due to their CMOS compatibility and low cost. The exploitation of graphene modulator latent capabilities remains an ongoing endeavour to improve the modulation and energy efficiency. Here, high-efficiency graphene-silicon hybrid-integrated thermal and electro-optical modulators are realized using gold-assisted transfer. We fabricate and demonstrate a microscale thermo-optical modulator with a tuning efficiency of 0.037 nm mW and a high heating performance of 67.4 K μm mW on a small active area of 7.54 μm and a graphene electro-absorption modulator featuring a high speed data rate reaching 56 Gb s and a low power consumption of 200 fJ per bit. These devices show superior performance compared to the state of the art devices in terms of high efficiency, low process complexity, and compact device footage, which can support the realization of high-performance graphene-silicon hybrid-integrated photonic circuits with CMOS compatibility.
石墨烯调制器被认为是实现高效光调制的一种潜在解决方案,而石墨烯 - 硅混合集成调制器因其与CMOS的兼容性和低成本而特别受青睐。挖掘石墨烯调制器的潜在能力仍然是一项持续进行的工作,旨在提高调制和能量效率。在此,利用金辅助转移实现了高效的石墨烯 - 硅混合集成热光和电光调制器。我们制造并展示了一种微尺度热光调制器,在7.54μm的小有源区域上具有0.037nm mW的调谐效率和67.4Kμm mW的高加热性能,以及一种石墨烯电吸收调制器,其高速数据速率达到56Gb s,每比特功耗低至200fJ。与现有技术的器件相比,这些器件在高效率、低工艺复杂性和紧凑的器件尺寸方面表现出卓越的性能,这有助于实现具有CMOS兼容性的高性能石墨烯 - 硅混合集成光子电路。