Dispersion filter for spectral and spatial resolution of pure rotational Raman scattering

A new filtering technique for Raman spectroscopy utilizes atomic vapor to suppress strong elastic and Rayleigh scattering while simultaneously resolving individual rotational Raman lines. Filtered images capture high-resolution spectral information in one dimension and spatial resolution in the othe...

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Veröffentlicht in:Optics letters 1998-10, Vol.23 (20), p.1615-1617
Hauptverfasser: Finkelstein, N D, Yalin, A P, Lempert, W R, Miles, R B
Format: Artikel
Sprache:eng
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Zusammenfassung:A new filtering technique for Raman spectroscopy utilizes atomic vapor to suppress strong elastic and Rayleigh scattering while simultaneously resolving individual rotational Raman lines. Filtered images capture high-resolution spectral information in one dimension and spatial resolution in the other dimension. The filter is based on resonance enhanced dispersion, where the index of refraction varies dramatically. In a simple prism geometry the vapor disperses incident radiation according to frequency. A mercury-vapor-based dispersion filter has been fabricated, modeled, and demonstrated to capture pure rotational Raman scattering from CO(2).
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.23.001615