Development of a New Optical Wavelength Rejection Filter: Demonstration of its Utility in Raman Spectroscopy
- 1 November 1984
- journal article
- research article
- Published by SAGE Publications in Applied Spectroscopy
- Vol. 38 (6), 847-850
- https://doi.org/10.1366/0003702844554693
Abstract
A new tunable optical filter has been developed which rejects a narrow wavelength interval ( 90%). This filter will be useful in optics, in spectroscopy, and for laser applications. The active element of the filter is a crystalline colloidal array of polystyrene spheres. The rejected wavelengths are Bragg diffracted from this ordered array. For a particular sphere concentration and scattering from a particular set of lattice planes, tunability can be achieved by the altering of the angle between the filter and incident light beam. Bragg diffraction and light rejection of these filters are monitored by transmission measurements. The utility of this filter for spectroscopic measurements is demonstrated for Raman spectroscopy. Raman measurements are shown for polypropylene, a highly scattering material with numerous low-frequency modes. The filter selectively attenuates the elastically scattered light and allows the low frequency peaks to be observed. Use of this wavelength rejection filter to reject the Rayleigh scattered light simplifies the instrumentation, decreases the cost, and increases the sensitivity of Raman spectral measurements. This filter also has the potential to replace dispersive elements such as gratings and prisms in a variety of spectroscopic and optical applications.Keywords
This publication has 20 references indexed in Scilit:
- Characterization of Optical Diffraction and Crystal Structure in Monodisperse Polystyrene ColloidsApplied Spectroscopy, 1984
- Laser-induced thermal diffraction for calorimetric absorption measurementsAnalytical Chemistry, 1982
- Optical examination of structured colloidal dispersionsThe Journal of Physical Chemistry, 1980
- On the solid-like phase transition in crystals of polystyrene spheres in aqueous suspensionsSolid State Communications, 1980
- Single colloidal crystalsNature, 1979
- Pressure of Kirkwood–Alder transition in monodisperse latexThe Journal of Chemical Physics, 1977
- The structure of crystallized suspensions of polystyrene spheresPhysics Letters A, 1974
- Diffraction of light by nonaqueous ordered suspensionsThe Journal of Physical Chemistry, 1971
- Diffraction of light by ordered suspensionsThe Journal of Physical Chemistry, 1969
- Diffraction of light by arrays of colloidal spheresJournal of the American Chemical Society, 1968