Acta Optica Sinica, Volume. 33, Issue 5, 530002(2013)
Theoretical and Experimental Researches on the Detection Phase Determination of Frequency Modulation Spectroscopy Based on the Residual Amplitude Modulation
[2] [2] Zhu Liang, Yan Long, Zou Bing et al.. Design of portable detection instrument for hydrogen sulfide [J]. Instrument Technique and Sensor, 2011, 3: 31~33
[3] [3] Zhang Xiaoxing, Yao Yao, Tang Ju et al.. Actuality and perspective of proximate analysis of SF6 decomposed products under partial discharge [J]. High Voltage Engineering, 2008, 34(4): 664~669
[4] [4] Song Xiaohui, Hai Zhongtian. The development of the contact combustion type of the gas sensor [J]. Measurement Technique, 2007, 8: 76~78
[5] [5] Zhang Jingchao, Liu Jin, Wang Yutian et al.. Study on a novel optical fiber CO gas sensor [J]. J. Optoelectronics Laser, 2004, 15(4): 428~431
[6] [6] Du Binxian, Chen Jinrun, Yin Jun. The improvement of the working principle and detection method of the thermal conductivity type gas sensor [J]. Chemical Engineering & Equipment, 2010, 2: 64~66
[7] [7] Jiang Fuchun, Zhu Changping, Lin Shanming et al.. Current situation and application of gas thickness detecting technology [J]. J. Hohai University Changzhou, 2004, 18(1): 16~19
[8] [8] V. Nagali, S. I. Chou, D. S. Baer et al.. Tunable diode-laser absorption measurements of methane at elevated temperatures [J]. Appl. Opt., 1996, 35(21): 4026~4032
[10] [10] Ma Weiguang, Yin Wangbao, Dong Lei et al.. High-sensitivity detection of methane near 6106 cm-1 using tunable external-cavity diode laser [J]. Japanese Journal of Applied Physics, 2005, 44(4A): 1961~1965
[11] [11] G. C. Bjrklund. Frequency-modulation spectroscopy: a new method for measuring weak absorptions and dispersions [J]. Opt. Lett., 1980, 5(1): 15~17
[12] [12] B. A. Paldus, A. A. Kachanov. An historical overview of cavity-enhanced methods [J]. Canadian J. Physics, 2005, 83(10): 975~999
[13] [13] A. Foltynowicz, W. G. Ma, F. M. Schmidt et al.. Doppler broadened noise immune cavity enhanced optical heterodyne molecular spectrometry signals from optically saturated transitions under low pressure conditions [J]. J. Opt. Soc. Am. B, 2008, 25(7): 1156~1165
[15] [15] Zhang Yongzhi, Li Zhixin, Yan Xiaojuan et al.. Optimization of frequency modulation spectral lineshape influenced by the residual amplitude modulation based on the low frequency control of electro-optic modulator [J]. Acta Optica Sinica, 2012, 32(3): 0330001
[16] [16] Li Liufeng, Liu Fang, Wang Chun et al.. Measurement and control of residual amplitude modulation in optical phase modulation [J]. Review Scientific Instruments, 2012, 83(043111): 1~10
[17] [17] Isak Silander, Patrick Ehlers, Junyang Wang et al.. Frequency modulation background signals from fiber-based electro optic modulators are caused by crosstalk [J]. Journal of Optical Society of America B, 2012, 29(5): 916~923
[18] [18] N. C. Wong, J. L. Hall. Servo control of amplitude modulation in frequency modulation spectroscopy: demonstration of shot-noise-limited detection [J]. Journal of Optical Society of America B, 1985, 2(9): 1527~1533
[19] [19] L. S. Rothman, I. E. Gordon, A. Barbe et al.. The HITRAN 2008 molecular spectroscopic database [J]. J. Quantitative Spectroscopy and Radiative Transfer, 2009, 110(9-10): 533~572
Get Citation
Copy Citation Text
Fu Xiaofang, Ma Weiguang, Tan Wei, Zhao Gang, Li Zhixin, Dong Lei, Zhang Lei, Yin Wangbao, Jia Suotang. Theoretical and Experimental Researches on the Detection Phase Determination of Frequency Modulation Spectroscopy Based on the Residual Amplitude Modulation[J]. Acta Optica Sinica, 2013, 33(5): 530002
Category: Spectroscopy
Received: Jan. 22, 2013
Accepted: --
Published Online: Apr. 23, 2013
The Author Email: Xiaofang Fu (fxf_sxdx2011@126.com)