Fourier transform spectroscopy multiplies the measured interferogram by an apodizing function
Fourier transform spectroscopy commonly employs apodizing functions (or window functions) applied to the measured interferogram to control spectral skirts and side lobes.
The retrieved literature consistently supports the claim that Fourier transform spectroscopy uses apodization functions on the measured interferogram to improve spectral quality, reduce side lobes, or manage dynamic ranges.
Judy P. Lee, Melvin B. Comisarow. Advantageous Apodization Functions for Magnitude-Mode Fourier Transform Spectroscopy. 1987. https://doi.org/10.1366/0003702874868016
Discusses systematic examinations of window functions for apodizing magnitude-mode Fourier transform spectra.
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Judy P. Lee, Melvin B. Comisarow. Advantageous Apodization Functions for Absorption-Mode Fourier Transform Spectroscopy. 1989. https://doi.org/10.1366/0003702894202517
Examines window functions for absorption-mode Fourier transform spectroscopy.
Aslan Baghdadi. Implicit Apodization of Interferograms in Fourier Transform Spectroscopy. 1983. https://doi.org/10.1366/0003702834634622
Notes the use of an apodization function applied to interferograms in Fourier transform spectroscopy.
Konstantin Ntokas, J. Ungermann, Martin Kaufmann. Norton-Beer apodization and its Fourier transform.. 2023. https://doi.org/10.1364/josaa.501593
Discusses the application of apodization windows to alter the instrument line shape in Fourier transform spectroscopy.
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