梅亮
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个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:隆德大学
学位:博士
所在单位:光电工程与仪器科学学院
学科:光学工程. 测试计量技术及仪器
办公地点:厚望楼404
联系方式:
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- [81]宫振峰.Gao, Tianli,梅亮,陈珂,Chen, Yewei,张博,彭伟,于清旭.Ppb-level detection of methane based on an optimized T-type photoacoustic cell and a NIR diode laser[J],PHOTOACOUSTICS,2022,21
- [82]Guan P..梅亮.Range-resolved atmospheric aerosol monitoring by a Scheimpflug lidar system based on a continuous-wave laserdiode[A],Asia Communications and Photonics Conference, ACPC 2016,2022
- [83]梅亮.Range-resolved atmospheric aerosol monitoring by a Scheimpflug lidar system based on a continuous-wave laser diode[A],Asia Communications and Photonics Conferene (ACP),2022
- [84]梅亮.宫振峰,刘琨.Recent advances in aerosol and trace gas monitoring by employing the Scheimpflug lidar techniques[A],29th International Laser Radar Conference Hefei,2022,237:7022-
- [85]梅亮.Remote Sensing of Atmospheric Aerosol and Gas Using Scheimpflug Lidar (SLidar) Based on Diode Lasers[A],Progress in Electromagnetic Research Symposium (PIERS),2022:3294-3294
- [86]梅亮.Guan, Peng,Kong, Zheng.Remote sensing of atmospheric NO2 by employing the continuous-wave differential absorption lidar technique[J],OPTICS EXPRESS,2022,25(20):A953-A962
- [87]Yang, Chenguang.梅亮,Wang, Xingping,Deng, Hao,Hu, Mai,Xu, Zhenyu,陈兵,He, Yabai,Kan, Ruifeng.Simultaneous measurement of gas absorption and path length by employing the first harmonic phase angle method in wavelength modulation spectroscopy[J],OPTICS EXPRESS,2022,28(3):3289-3297
- [88]梅亮.Simultaneous measurement of gas concentration and absorption path length by employing the first harmonic phase angle method in wavelength modulation spectroscopy[J],OPTICS EXPRESS,2022,28:3289-3297
- [89]宫振峰.高田力,陈烨伟,张博,彭伟,于清旭,马凤翔,梅亮,陈珂.Sub-ppb level detection of nitrogen dioxide based on an optimized H-type longitudinal acoustic resonator and a lock-in white-light interferometry demodulation algorithm[J],JOURNAL OF QUANTITATIVE SPECTROSCOPY RADIATIVE TRANSFER,2022,253:107136-
- [90]梅亮.Kong, Zheng,Ma, Teng,Li, Limei,Liu, Zhi.Applications of the Scheimpflug Lidar Technique in Atmospheric Remote Sensing[A],2019 PHOTONICS & ELECTROMAGNETICS RESEARCH SYMPOSIUM - SPRING (PIERS-SPRING),2022:2198-2203
