欢迎访问山西大学激光光谱研究所
武红鹏
发布时间:2018-05-11 浏览:
武红鹏  
教授  

教育背景:

2007年9月至2011年7月就读于山西大学物理电子工程学院,获理学学士学位;
2011年9月至2017年7月就读于山西大学激光光谱研究所(量子光学与光量子器件国家重点实验室)原子与分子物理专业,获理学博士学位;
2015年9月至2016年9月作为公派联合培养博士研究生赴美国莱斯大学(RICE University)电子计算机工程学院学习。

研究方向:

 激光光谱技术,光声光谱,光学气体检测

 

办公地址:光谱所309

电子邮箱:wuhp@sxu.edu.cn

办公电话:

近期论文成果:

28. Hongpeng Wu, Lei Dong*, Huadan Zheng, Yajun Yu, Weiguang Ma, Lei Zhang, Wangbao Yin, Liantuan Xiao, Suotang Jia, and Frank K. Tittel. Beat frequency quartz-enhanced photoacoustic spectroscopy for fast and calibration-free continuous trace-gas monitoring. Nature Communications, 2017, 8, 15331.
27. Hongpeng Wu, Xukun Yin, Lei Dong*, Kailong Pei, Angelo Sampaolo, Pietro Patimisco, Huadan Zheng, Weiguang Ma, Lei Zhang, Wangbao Yin, Liantuan Xiao, Vincenzo Spagnolo, Suotang Jia, and Frank K. Tittel. Simultaneous dual-gas QEPAS detection based on a fundamental and overtone combined vibration of quartz tuning fork. Applied Physics Letters, 2017, 110, 121104.
26. Hongpeng Wu, Frank K. Tittel, Lei Dong*, Huadan Zheng, Xukun Yin, and Suotang Jia. Near-infrared Quartz Enhanced Photoacoustic Sensor for Sub-ppm Level H2S Detection based on a Fiber-amplifier Source. CLEO: Applications and Technology. Optical Society of America, 2016.
25. Hongpeng Wu, Lei Dong*, Huadan Zheng, Xiaoli Liu, Xukun Yin, Weiguang Ma, Lei Zhang, Wangbao Yin, Suotang Jia, and Frank K. Tittel. Enhanced near-infrared QEPAS sensor for sub-ppm level H2S detection by means of a fiber amplified 1582 nm DFB laser. Sensors and Actuators B, 2015, 221, 666.
24. Hongpeng Wu, Lei Dong*, Wei Ren, Wangbao Yin, Weiguang Ma, Lei Zhang, Suotang Jia, and Frank K. Tittel. Position effects of acoustic micro-resonator in quartz enhanced photoacoustic spectroscopy. Sensors and Actuators B, 2015, 206, 364.
23. Hongpeng Wu, Dongdong Zhang, Lei Dong*, Huadan Zheng, Yanyan Liu, Wangbao Yin, Weiguang Ma, Lei Zhang, Suotang Jia. Optical Detection Technique Using Quartz-Enhanced Photoacoustic Spectrum. International Journal of Thermophysics, 2015, 36, 1297.
22. Hongpeng Wu, Lei Dong*, Xiaoli Liu, Huadan Zheng, Xukun Yin, Weiguang Ma, Lei Zhang, Wangbao Yin, and Suotang Jia. Fiber-Amplifier-Enhanced QEPAS Sensor for Simultaneous Trace Gas Detection of NH3 and H2S. Sensors 2015, 15, 26743.
21. Hongpeng Wu, Angelo Sampaolo, Lei Dong*, Pietro Patimisco, Xiaoli Liu, Huadan Zheng, Xukun Yin, Weiguang Ma, Lei Zhang, Wangbao Yin, Vincenzo Spagnolo, Suotang Jia, and Frank K. Tittel. Quartz enhanced photoacoustic H2S gas sensor based on a fiber-amplifier source and a custom tuning fork with large prong spacing. Applied Physics Letters, 2015, 107, 111104.
20. Lei Dong*, Hongpeng Wu, Huadan Zheng, Yanyan Liu, Xiaoli Liu, Wenzhe Jiang, Lei Zhang, Weiguang Ma, Wei Ren, Wangbao Yin, Suotang Jia, and Frank K. Tittel. Double acoustic microresonator quartz-enhanced photoacoustic spectroscopy. Optics Letters, 2014, 39, 2479.
19. Huadan Zheng, Lei Dong*, Pietro Patimisco, Hongpeng Wu, Angelo Sampaolo, Xukun Yin, Shangzhi Li, Weiguang Ma, Lei Zhang, Wangbao Yin, Liantuan Xiao, Vincenzo Spagnolo, Suotang Jia, and Frank K. Tittel. Double antinode excited quartz-enhanced photoacoustic spectrophone. Applied Physics Letters, 2017, 110, 021110.
18. Xukun Yin, Lei Dong*, Hongpeng Wu, Huadan Zheng, Weiguang Ma, Lei Zhang, Wangbao Yin, Suotang Jia, and Frank K. Tittel. Sub-ppb nitrogen dioxide detection with a large linear dynamic range by use of a differential photoacoustic cell and a 3.5 W blue multimode diode laser. Sensors and Actuators B: Chemical, 2017, 247, 329.
17. Yajun Yu, Nancy. P. Sanchez, Fan Yi1, Chuantao Zheng, Weilin Ye, Hongpeng Wu, Robert J. Griffn, and Frank K. Tittel. Dual quantum cascade laser based sensor for simultaneous NO and NO2 detection using a wavelength modulation division multiplexing technique. Applied Physics B-Lasers and Optics, 2017, 123, 164.
16. Lei Dong* , Frank K. Tittel, Chunguang Li, Nancy P. Sanchez, Hongpeng Wu, Chuantao Zheng, Yajun Yu, Angelo Sampaolo, and Robert J. Griffin. Compact TDLAS based sensor design using interband cascade lasers for mid-IR trace gas sensing. Optics Express, 2016, 24, 528.
15. Xukun Yin, Lei Dong*, Huadan Zheng, Xiaoli Liu, Hongpeng Wu, Yanfang Yang, Weiguang Ma, Lei Zhang, Wangbao Yin, Liantuan Xiao, and Suotang Jia. Impact of Humidity on Quartz-Enhanced Photoacoustic Spectroscopy Based CO Detection Using a Near-IR Telecommunication Diode Laser. Sensors 2016, 16, 162.
14. Huadan Zheng, Lei Dong*, Ying Ma, Hongpeng Wu, Xiaoli Liu, Xukun Yin, Lei Zhang, Weiguang Ma, Wangbao Yin, Liantuan Xiao, and Suotang Jia. Scattered light modulation cancellation method for sub-ppb-level NO2 detection in a LD-excited QEPAS system. Optics Express, 2016, 24, A752.
13. Huadan Zheng, Lei Dong*, Angelo Sampaolo, Hongpeng Wu, Pietro Patimisco, Xukun Yin, Weiguang Ma, Lei Zhang, Wangbao Yin, Vincenzo Spagnolo, Suotang Jia, and Frank K. Tittel. Optics Letters, 2016, 41, 978.
12. Lei Dong*, Yanyan Liu, Huadan Zheng, Xiaoli Liu, Hongpeng Wu, Weiguang Ma, Lei Zhang, Wangbao Yin, Suotang Jia. Design and Optimization of QTF Chopper for Quartz-Enhanced Photoacoustic Spectroscopy. International Journal of Thermophysics, 2015, 36, 1289.
11. Huadan Zheng, Xukun Yin, Guofeng Zhang, Lei Dong*, Hongpeng Wu, Xiaoli Liu, Weiguang Ma, Lei Zhang,Wangbao Yin, Liantuan Xiao, Suotang Jia, and Frank K. Tittel. Quartz-enhanced conductance spectroscopy for nanomechanical analysis of polymerwire. Applied Physics Letters, 2015, 107, 221903.
10. Huadan Zheng, Xukun Yin, Lei Dong*, Hongpeng Wu, Xiaoli Liu, Weiguang Ma, Lei Zhang, Wangbao Yin, and Suotang Jia. Multi-Quartz Enhanced Photoacoustic Spectroscopy with Different Acoustic Microresonator Configurations. Journal of Spectroscopy, 2015, 10, 218413.
9. Huadan Zheng, Lei Dong*, Xiaoli Liu, Yanyan Liu, Hongpeng Wu, Weiguang Ma, Lei Zhang, Wangbao Yin, and Suotang Jia. Near-IR telecommunication diode laser based double-pass QEPAS sensor for atmospheric CO2 detection. Laser Physics, 2015, 25, 125601.
8. Huadan Zheng, Lei Dong*, Xukun Yin, Xiaoli Liu, Hongpeng Wu, Lei Zhang, Weiguang Ma, Wangbao Yin, Suotang Jia. Ppb-level QEPAS NO2sensor by use of electrical modulation cancellation method with a high power blue LED. Sensors and Actuators B: Chemical, 2015, 208, 173.
7. 武红鹏, 董磊*, 郑华丹, 刘研研, 刘小利, 尹旭坤, 马维光, 张雷, 尹王保, 贾锁堂. 双通道石英增强光声光谱测声器的设计及实验研究. 大气与环境光学学报, 2016, 11.
6. 武红鹏, 董磊*, 郑华丹, 刘研研, 马维光, 张雷, 王五一, 朱庆科, 尹王保, 贾锁堂. 基于微型非共振腔的石英增强光声光谱用于氦气纯度分析的实验研究. 物理学报, 2013, 62, 070701.
5. 刘小利, 武红鹏, 邵 杰, 董 磊*, 张 雷, 马维光, 尹王保, 贾锁堂. 利用石英增强光声光谱技术在2.0μm处实现高灵敏CO2检测的实验研究. 光谱学与光谱分析, 2015, 35, 2078.
4. 刘研研, 董磊*, 武红鹏, 郑华丹, 马维光, 张雷, 尹王保, 贾锁堂. 全光型石英增强光声光谱. 物理学报, 2013, 62, 220701.
3. 刘妍妍, 刘小利, 武红鹏, 董 磊*, 马维光, 张 雷, 尹王保, 贾锁堂. 音叉式石英晶振谐振频率的非电学快速测量方法. 大气与环境光学学报, 2015, 10.
2. 郑华丹, 董磊*, 刘研研, 武红鹏, 张雷, 马维光, 尹王保, 贾锁堂. 石英晶振用于石英增强光声光谱系统的优化实验研究. 光谱学与光谱分析, 2013, 33, 3187.
1. 尹旭坤, 郑华丹, 董磊*, 武红鹏, 刘小利, 马维光, 张雷, 尹王保, 贾锁堂.基于电学调制相消法和高功率蓝光LD 的离轴石英增强光声光谱NO2 传感器设计和优化. 物理学报, 2015, 64, 130701.

 获批国家专利:

[1].基于声激励的音叉式石英晶振谐振频率的测量方法及装置,专利号:ZL 201410153686.8 
[2].基于光激励的音叉式石英晶振谐振频率的测量方法及装置,专利号:ZL 201410153732.4 
[3].基于迈克尔逊干涉原理的全光学气体探测方法及装置,专利号:ZL 201310494334.4 
[4].基于石英增强光声光谱的全光学气体探测方法及装置,专利号:ZL 201310305128.4