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NASA NTRS · 20080024107

Multi-Point Interferometric Rayleigh Scattering using Dual-Pass Light Recirculation

Abstract

This paper describes for the first time an interferometric Rayleigh scattering system using dual-pass light recirculation (IRS-LR) capable of simultaneously measuring at multiple points two orthogonal components of flow velocity in combustion flows using single shot laser probing. An additional optical path containing the interferometer input mirror, a quarter-wave plate, a polarization dependent beam combiner, and a high reflectivity mirror partially recirculates the light that is rejected by the interferometer. Temporally- and spatially-resolved acquisitions of Rayleigh spectra in a large-scale combustion-heated supersonic axi-symmetric jet were performed to demonstrate the technique. Recirculating of Rayleigh scattered light increases the number of photons analyzed by the system up to a factor of 1.8 compared with previous configurations. This is equivalent to performing measurements with less laser energy or performing measurements with the previous system in gas flows at higher temperatures.

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BibTeXRIS

Bivolaru, Daniel, Danehy, Paul M., Cutler, Andrew D.. 2008-06-23. Multi-Point Interferometric Rayleigh Scattering using Dual-Pass Light Recirculation. https://ntrs.nasa.gov/citations/20080024107

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