谐振器
光子学
键控
光通信
功勋
硅光子学
灵敏度(控制系统)
电子工程
传输(电信)
光电子学
计算机科学
信号(编程语言)
波导管
材料科学
折射率
电信
工程类
程序设计语言
作者
Xiangpeng Ou,Ying Qiu,Ming Luo,Junjie Li,Xiaobin He,Jianfeng Gao,Fujun Sun,Peng Zhang,Gang Yang,Anyan Du,Bin Li,Zichen Liu,Zhihua Li,Ling Xie,Xi Xiao,Jun Luo,Wenwu Wang,Tao Jin,Yan Yang
标识
DOI:10.1002/admt.202300998
摘要
Abstract Advanced silicon photonic technologies enable integrated optical sensing and communication (IOSAC) in real time for the emerging application requirements of simultaneous sensing and communication for next‐generation networks. Herein, an IOSAC system is proposed and demonstrated on the silicon nitride (Si 3 N 4 ) photonics platform. The IOSAC devices leveraging microring resonators excel in real‐time monitoring of analyte fluctuations and efficiently transmit this data to the terminal, positioning them as viable alternatives to bulk optics in applications that demand both high precision and speed. By directly integrating Si 3 N 4 ring resonators with optical communication networks, simultaneous sensing and optical communication are demonstrated by an optical signal transmission experimental system using especially filtering amplified spontaneous emission spectra. The refractive index (RI) sensing ring with a sensitivity of 172 nm RIU −1 , a figure of merit (FOM) of 1220, and a detection limit (DL) of 8.2 × 10 −6 RIU is demonstrated. Simultaneously, the 1.25 Gbps optical on‐off‐keying (OOK) signal is transmitted at the concentration of different NaCl solutions, indicating the bit‐error‐ratio (BER) decreases with the increase in concentration. The novel IOSAC technology shows the potential to realize high‐performance simultaneous biosensing and communication in real time and further accelerate the development of IoT and 6G networks.
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