Near-resonant holographic interferometry and absorption measurements of seeded atomic species in a flame

Applied Optics
Alexis I BishopHalina Rubinsztein-Dunlop

Abstract

The development of near-resonant holographic interferometry techniques for use on flows seeded with atomic species is described. A theoretical model for the refractivity that is due to the seed species is outlined, and an approximation to this model is also described that is shown to be valid for practical regimes of interest and allows the number density of the species to be determined without knowledge of line-broadening effects. The details of quantitative number density experiments performed on an air-acetylene flame are given, and a comparison with an alternative absorption-based experiment is made.

References

Aug 15, 2003·Applied Optics·Timothy J McIntyreHalina Rubinsztein-Dunlop
Apr 1, 1991·Optics Letters·L F Rubin, D M Swain
Oct 1, 1967·Applied Optics·W C Marlow

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Citations

Aug 22, 2008·Applied Optics·Robert HruschkaHarald Kleine
Dec 25, 2004·Applied Optics·Alexis I BishopHalina Rubinsztein-Dunlop

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