Chinese Journal of Quantum Electronics, Volume. 36, Issue 6, 663(2019)
High-resolution water molecule absorption spectrum measurement system with adjustable optical path and its application
The absorption spectrum of natural abundan ce water vapor at 1.51 μm has been studied at room temperature by using a high-resolution tunable diode laser absorption spectrometer (TDLAS) combined with a long-path White absorption cell. A total of 57 absorption lines are investigated within the laser spectral range (6608~6624.3 cm-1). The line positions, line intensities and self-broadening coefficients of these lines are obtained by using a nonlinear least-squares fitting method, and then compared with the available values reported in the HITRAN 2016 database. Results show that the experimental data of present work is in good agreement with those from HITRAN 2016 database, which indicates that the spectral measurement system is suitable for study on the spectra of water vapor.
Get Citation
Copy Citation Text
MA Hongliang, ZHA Shenlong, ZHA Changli, ZHANG Qilei, CAI Xueyuan, CAO Zhensong, ZHAN Shengbao, PAN Pan. High-resolution water molecule absorption spectrum measurement system with adjustable optical path and its application[J]. Chinese Journal of Quantum Electronics, 2019, 36(6): 663
Category:
Received: Jul. 1, 2019
Accepted: --
Published Online: Dec. 6, 2019
The Author Email: Hongliang MA (hlgnma@foxmail.com)