Cygan Agata, Lisak Daniel, Morzyński Piotr, Bober Marcin, Zawada Michał, Pazderski Eugeniusz, Ciuryło Roman
Opt Express. 2013 Dec 2;21(24):29744-54. doi: 10.1364/OE.21.029744.
We explore a cavity-enhanced spectroscopic technique based on determination of the absorbtion coefficient from direct measurement of spectral width of the mode of the optical cavity filled with absorbing medium. This technique called here the cavity mode-width spectroscopy (CMWS) is complementary to the cavity ring-down spectroscopy (CRDS). While both these techniques use information on interaction time of the light with the cavity to determine absorption coefficient, the CMWS does not require to measure very fast signals at high absorption conditions. Instead the CMWS method require a very narrow line width laser with precise frequency control. As an example a spectral line shape of P7 Q6 O₂ line from the B-band was measured with use of an ultra narrow laser system based on two phase-locked external cavity diode lasers (ECDL) having tunability of ± 20 GHz at wavelength range of 687 to 693 nm.
我们探索了一种基于通过直接测量充满吸收介质的光学腔模式的光谱宽度来确定吸收系数的腔增强光谱技术。这种在此称为腔模宽度光谱法(CMWS)的技术与腔衰荡光谱法(CRDS)互补。虽然这两种技术都利用光与腔的相互作用时间信息来确定吸收系数,但CMWS在高吸收条件下不需要测量非常快的信号。相反,CMWS方法需要具有精确频率控制的极窄线宽激光器。例如,使用基于两个锁相外腔二极管激光器(ECDL)的超窄激光系统测量了来自B波段的P7 Q6 O₂线的光谱线形状,该系统在687至693 nm波长范围内具有±20 GHz的可调谐性。