Rowe Penny M, Neshyba Steven P, Cox Christopher J, Walden Von P
Department of Geography, University of Idaho, Moscow, Idaho 83843, USA.
Opt Express. 2011 Mar 28;19(7):5930-41. doi: 10.1364/OE.19.005930.
Spectra measured by remote-sensing Fourier transform infrared spectrometers are often calibrated using two calibration sources. At wavenumbers where the absorption coefficient is large, air within the optical path of the instrument can absorb most calibration-source signal, resulting in extreme errors. In this paper, a criterion in terms of the instrument responsivity is used to identify such wavenumbers within the instrument bandwidth of two remote-sensing Fourier transform infrared spectrometers. Wavenumbers identified by the criterion are found to be correlated with strong absorption line-centers of water vapor. Advantages of using a responsivity-based criterion are demonstrated.