宽带
铌酸锂
带宽(计算)
光电子学
电信
材料科学
光通信
计算机科学
光子学
光调制器
传输(电信)
光学
多光谱图像
电子工程
宽带网络
光纤
带宽分配
桥接(联网)
C波段
数据传输
色散(光学)
波分复用
波导管
纳米光子学
物理
作者
Q. X. Li,Qiyuan Yi,Aolong Sun,Chenglin Shang,Yiqi Dai,Sizhe Xing,Jinlai Cui,Yupeng Zhu,Jiayi Li,J. Zheng,J. Zhang,Nan Chi,An Pan,Cheng Zeng,Jinsong Xia,Shuang Zheng,Li Shen,Minming Zhang
标识
DOI:10.1038/s41467-025-67902-2
摘要
The escalating capacity limitations of conventional near-infrared telecommunication bands have spurred urgent investigations into wide-band optical communication systems spanning from the near-infrared to mid-infrared regimes. This has motivated the development of optical components combining broadband bandwidth with high-speed operation. The state-of-the-art modulators face challenges in achieving broad operational bandwidth due to waveguide dispersion and velocity mismatch. Here we demonstrate a thin-film lithium niobate (TFLN) electro-optic (EO) modulator with an unprecedented 800-nm operational bandwidth, covering the full O-U telecom bands and extending into the 2-μm regime. The TFLN modulator exhibits >67 GHz EO bandwidth across O-U bands (~100 GHz at O-/S-/C-/L-bands) and >50 GHz at 2-μm band. It enables single-lane exceeding 240 Gbps PAM-4 transmission across O-U bands and a record 170 Gbps PAM-4 transmission at 2-μm band. This breakthrough establishes TFLN as a compelling platform for multispectral photonics, bridging conventional telecom infrastructure with emerging 2-μm technologies for next-generation optical communications.
科研通智能强力驱动
Strongly Powered by AbleSci AI