Use of a Fabry–Perot interferometer to isolate pure rotational Raman spectra of diatomic molecules
- 20 July 1999
- journal article
- Published by Optica Publishing Group in Applied Optics
- Vol. 38 (21) , 4635-4638
- https://doi.org/10.1364/ao.38.004635
Abstract
We propose to use a Fabry–Perot interferometer (FPI) as a comb frequency filter to isolate pure rotational Raman spectra (PRRS) of nitrogen molecules. In making the FPI’s free spectral range equal to the spectral spacing between the lines of nitrogen PRRS, which are practically equidistant, one obtains a device with a comb transmission function with the same period. However, to match the FPI transmission comb completely with the comb of nitrogen PRRS lines one should tune the wavelength of the radiation used to excite the PRRS of nitrogen exactly to the position of any minimum in the FPI transmission comb. Thus to achieve this task for the case of nitrogen PRRS one must take the FPI’s free spectral range Δν f = 4B N2 and the wavelength of the exciting radiation such that (1/λexc) = 4B N2(k + 1/2), where B N2 is the rotational constant of the nitrogen molecule and k is an arbitrary integer number. In this case all (odd and even) pure rotational Raman lines of nitrogen will pass through the FPI while the line of exciting radiation is being suppressed. Additionally, a FPI cuts out the spectrally continuous sky background light from the spectral gaps between the PRRS lines.Keywords
This publication has 6 references indexed in Scilit:
- Remote daytime measurements of tropospheric temperature profiles with a rotational Raman lidarOptics Letters, 1996
- Atmospheric temperature measurements made by rotational Raman scatteringApplied Optics, 1993
- Rotational Raman lidar to measure the atmospheric temperature from the ground to 30 kmIEEE Transactions on Geoscience and Remote Sensing, 1993
- Atmospheric temperature measurements using a pure rotational Raman lidarApplied Optics, 1983
- On the use of a Fabry—Perot etalon for the determination of rotational constants of simple molecules—the pure rotational Raman spectra of oxygen and nitrogenProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1971