Angular output of hollow, metal-lined, waveguide Raman sensors |
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Authors: | Biedrzycki Stephen Buric Michael P Falk Joel Woodruff Steven D |
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Affiliation: | Office of Research and Development, National Energy Technology Laboratory, Morgantown, West Virginia 26507-0880, USA. |
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Abstract: | Hollow, metal-lined waveguides used as gas sensors based on spontaneous Raman scattering are capable of large angular collection. The collection of light from a large solid angle implies the collection of a large number of waveguide modes. An accurate estimation of the propagation losses for these modes is required to predict the total collected Raman power. We report a theory/experimental comparison of the Raman power collected as a function of the solid angle and waveguide length. New theoretical observations are compared with previous theory appropriate only for low-order modes. A cutback experiment is demonstrated to verify the validity of either theory. The angular distribution of Raman light is measured using aluminum and silver-lined waveguides of varying lengths. |
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