Optical Technique, Volume. 51, Issue 2, 218(2025)
CO2 spectroscopy measurement based on dual femtosecond optical frequency combs
[3] [3] Hlne P, Sean C, Andrew S, et al. Four years of global carbon cycle observed from OCO-2 version 9 and in situ data, and comparison to OCO-2 v7[J]. Atmospheric Chemistry and Physics,2022,22(2):1097—1130.
[11] [11] Diddams S A, Udem T, Bergquist J C, et al. An optical clock based on a single trapped 199hg+ ion[J]. Science,2001,293(5531):825—828.
[12] [12] Schiller S. Spectrometry with frequency combs[J]. Optics Letters,2002,27(9):766—768.
[13] [13] Giaccari P, Deschnes J D, Saucier P, et al. Active fourier-transform spectroscopy combining the direct RF beating of two fiberbased mode-locked lasers with a novel referencing method[J]. Optics Express,2008,16(6):4347—4365.
[14] [14] Coddington I, Swann W C, Newbury N R. Coherent multiheterodyne spectroscopy using stabilized optical frequency combs[J]. Physical Review Letters,2008,100(1):013902.
[15] [15] Coddington I, Swann W C, Newbury N R. Coherent dual-comb spectroscopy at high signal-to-noise ratio[J]. Physical Review A,2010,82(4): 43817.
[19] [19] Zhong Zuo, Chenglin Gu, Siyi Wang, et al. Phase-stable multidimensional coherent spectroscopy based on dual-comb interferometry[J]. Advanced Optical Materials,2024,12(01):2303130.
[22] [22] Coddington I, Newbury N, Swann W. Dual-comb spectroscopy[J]. Optica,2016,3(4):414—426.
Get Citation
Copy Citation Text
LI Ketai, LI Xiaofeng, XIA Chuanqing, WU Tengfei, YANG Yongjun, CAI Jing. CO2 spectroscopy measurement based on dual femtosecond optical frequency combs[J]. Optical Technique, 2025, 51(2): 218