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Investigation on infrared laser absorption spectroscopy measurement of acetylene trace quantities
Authors:Weidong Chen  Jean Burie  Daniel Boucher
Institution:1. Research School of High–Energy Physics, National Research Tomsk Polytechnic University, Tomsk 634050, Russia;2. Institut für Physikalische und Theoretische Chemie, Technische Universität Braunschweig, D - 38106, Braunschweig, Germany
Abstract:A laser-based infrared spectrometer was developed for use in high-resolution spectroscopic analysis of trace gases in the atmosphere. Continuous wave, broadly tunable coherent infrared radiation was generated from 8 to 19 μm in a gallium selenide crystal by laser difference-frequency mixing. Measurements of acetylene trace concentrations using laser absorption spectroscopy are reported. The measurements have been performed by using the P(21), Q(11), and R(9) lines of the ν5 band, respectively, in order to investigate optimal detection conditions: a trade-off choice between higher line absorption strength for sensitive detection and better spectral discrimination from lines overlapping for open path trace-gas monitoring applications. Minimum detectable concentrations are compared under different experimental conditions. The ν5 R(9) line seems to be close to optimum in terms of absorption strength and freedom from spectral interference for spectroscopic detection of acetylene trace concentration at atmospheric pressure.
Keywords:Laser frequency conversion  Infrared spectroscopy  Acetylene  Trace measurement
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