Precision saturated absorption spectroscopy of H 3

In our previous work on the Lamb-dips of the ν fundamental band transitions of H , the saturated absorption spectrum was obtained by third-derivative spectroscopy using frequency modulation with an optical parametric oscillator (OPO). However, frequency modulation also caused errors in the absolute...

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Veröffentlicht in:The Journal of chemical physics 2018-03, Vol.148 (12), p.124310
Hauptverfasser: Guan, Yu-Chan, Chang, Yung-Hsiang, Liao, Yi-Chieh, Peng, Jin-Long, Wang, Li-Bang, Shy, Jow-Tsong
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Sprache:eng
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Zusammenfassung:In our previous work on the Lamb-dips of the ν fundamental band transitions of H , the saturated absorption spectrum was obtained by third-derivative spectroscopy using frequency modulation with an optical parametric oscillator (OPO). However, frequency modulation also caused errors in the absolute frequency determination. To solve this problem, we built a tunable offset locking system to lock the pump frequency of the OPO to an iodine-stabilized Nd:YAG laser. With this improvement, we were able to scan the OPO idler frequency precisely and obtain the saturated absorption profile using intensity modulation. Furthermore, ion concentration modulation was employed to subtract the background noise and increase the signal-to-noise ratio. To determine the absolute frequency of the idler wave, the OPO signal frequency was locked to an optical frequency comb. The absolute frequency accuracy of our spectrometer was better than 7 kHz, demonstrated by measuring the wavelength standard transition of methane at 3.39 μm. Finally, we measured 16 transitions of H and our results agree very well with other precision measurements. This work successfully resolved the discrepancies between our previous measurements and other precision measurements.
ISSN:1089-7690
DOI:10.1063/1.5017080