Fourier Transform Raman Spectroscopy Using a Tuneable Solid-State Laser and a Semiconductor Bandgap Filter
- 1 March 1991
- journal article
- research article
- Published by SAGE Publications in Applied Spectroscopy
- Vol. 45 (3) , 325-327
- https://doi.org/10.1366/0003702914337092
Abstract
The feasibility of using the optical absorption properties of a semiconductor crystal as a long wavelength pass filter for Fourier transform Raman spectroscopy applications has been demonstrated. Near-infrared excitation from a titanium: sapphire solid-state laser was selectively tuned to the edge of the bandgap absorption of an indium-doped cadmium telluride semiconductor filter. Raman spectra to within 30 cm−1 of the exciting line could be measured. Narrowing of the optical absorption of the semiconductor filter at low temperatures did not improve the “sharpness” of the cutoff performance.Keywords
This publication has 7 references indexed in Scilit:
- Development of Near-Infrared Fourier Transform Raman Spectroscopy for the Study of Biologically Active MacromoleculesApplied Spectroscopy, 1988
- Fourier Transform Raman Spectroscopy of Long-Chain Molecules Containing Strongly Absorbing ChromophoresApplied Spectroscopy, 1987
- Interferometric Observation of Raman Spectra: Comparison of Photomultiplier and Avalanche Diode DetectorsApplied Spectroscopy, 1986
- FT-Raman Spectroscopy: Development and JustificationApplied Spectroscopy, 1986
- Raman spectroscopy of gases with a Fourier transform spectrometer: the spectrum of D_2Applied Optics, 1986
- Fourier Transform Raman SpectroscopyPublished by Springer Nature ,1974
- Interferometric Raman Spectroscopy Using Infra-Red ExcitationNature, 1964