姚晨雨于2016年本科毕业于东南大学测控技术与仪器专业,获得工学学士学位;同年获全额奖学金赴香港中文大学机械与自动化工程学系深造,2020年取得哲学博士学位(导师:任伟教授),毕业后继续在香港中文大学从事博士后研究。2022年3月入职山东大学光学高等研究中心,任职研究员,同时入选山东大学“齐鲁青年学者”。
招收光学工程、电子信息、机械自动化相关专业方向研究生,如果你对光纤传感、激光光谱感兴趣,喜欢动手做实验,欢迎联系我: yaocy@sdu.edu.cn,这里提供平等且充实的学习氛围。
主要研究方向为高灵敏激光光谱法和痕量物质检测技术,致力于新型激光诊断方法的应用和实验研究,主要包括:1)以空芯反谐振光纤为代表的光波导化学传感、光纤微纳结构精密制造;2)光谱检测方法的基础和应用研究,包括TDLAS、光热光谱、光声光谱法等;3)大气、海洋等环境化学物质定量检测与分析。
代表性论文:
“用于溶解气体探测的微通道空芯反谐振光纤传感系统”,姜荣振,姚晨雨*,赵显,光学学报(网络版),第3卷第4期,0412010(2026)
“Dissolved methane sensing using a microchanneled hollow-core anti-resonant fiber”, R. Jiang, C. Yao*, X. Zhao, Optics Letters, 51, 516 (2026).
"Temperature-compensated ppb-level methane detection system based on heterodyne interferometric photothermal spectroscopy in a hollow-core antiresonant fiber", M. Hu*, C. Yao, J. Wu, D. Wang, W. Ren, Optics & Laser Technology, 193,114190 (2026).
"Highly Sensitive Photothermal Gas Detection Enabled by a Hollow-Core Antiresonant Fiber with Fiber Bragg Gratings, R. Jiang, C. Yao*, X. Zhao, Q. Wang, Journal of Lightwave Technology, 43, 2828 (2025).
:Photothermal Gas Sensing Using a Nanofiber Fabry-Pérot Cavity", Z. Shi, C. Yao*, X. Zhao, IEEE Sensors Journal,25,19176(2025)
"Fabry-Perot photothermal interferometry in a hollow-core antiresonant fiber for gas detection in mid-infrared", C. Yao*, Z. Shi, Z. Li, X. Zhao*, Sensors and Actuators B, 414, 135930 (2024).
"Photothermal Gas Detection With a Dithered Low-Finesse Fiber-Optic Fabry-Pérot Interferometer", C. Yao, S. Jiang, S. Gao, Y. Wang, W. Jin and W. Ren*, Journal of Lightwave Technology, 41, 745-751 (2023).
"Mid-Infrared Photothermal Gas Sensor Enabled By Core-Cladding Mode Interference in a Hollow-Core Fiber", M. Hu , C. Yao, A. Ventura, J. G. Hayashi, F. Poletti, W. Ren*, Journal of Lightwave Technology, 40, 6568 (2022)
"Tellurite hollow-core antiresonant fiber-coupled quantum cascade laser absorption spectroscopy", C. Yao#, M. Hu#, A. Ventura, J. G. Hayashi, F. Poletti, and W. Ren*, Journal of Lightwave Technology, 39, 5662-5668 (2021).
"Heterodyne interferometric photothermal spectroscopy for gas detection in a hollow-core fiber", C. Yao, S. Gao, Y. Wang, W. Jin, and W. Ren*, Sensors and Actuators B, 346, 130528 (2021).
"Sub-ppm CO detection in a sub-meter-long hollow-core negative curvature fiber using absorption spectroscopy at 2.3 µm", C. Yao, L. Xiao, S. Gao, Y. Wang, P. Wang, R. Kan, W. Jin, and W. Ren*, Sensors and Actuators B, 305, 127238 (2020).
"Silica Hollow-Core Negative Curvature Fibers Enable Ultrasensitive Mid-Infrared Absorption Spectroscopy", C. Yao, S. Gao, Y. Wang , P. Wang, W. Jin, W. Ren*, Journal of Lightwave Technology, 38, 2067 (2020)
"MIR-Pump NIR-Probe Fiber-Optic Photothermal Spectroscopy With Background-Free First Harmonic Detection", C. Yao, S. Gao, Y. Wang, P. Wang, W. Jin, W. Ren*, IEEE Sensors Journal, 20, 12709 (2020)
"Photothermal CO detection in a hollow-core negative curvature fiber", C. Yao, Q. Wang, Y. Lin, W. Jin, L. Xiao, S. Gao, Y. Wang, P. Wang, and W. Ren*, Optics Letters, 44(16), 4048-4051 (2019).
"Interband cascade laser absorption sensor for real-time monitoring of formaldehyde filtration by a nanofiber membrane", C. YAO, Z. WANG, Q. WANG, Y. BIAN, C. CHEN, L. ZHANG, W. REN*, Applied Optics, 57, 8005 (2018)
发明专利:
1. 一种光纤光热气体传感装置及方法,中国发明专利,CN111504945A
2. Pump-probe photothermal spectroscopy having passive phase detection and an optical waveguide, 美国发明专利, US20230003635A1
科研项目:
1. 2023年度国家自然科学基金青年项目(62305187), 2024.01-2026.12, 主持
2. 2023年度山东省自然科学基金青年项目(ZR2023QF095), 2024.01-2026.12, 主持
3. 2026年度山东省自然科学基金面上项目, 2026.07-2029.6, 主持
开设课程:
1. 秋学期本科生课程,《工程图学基础与计算机绘图》