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TUNABLE DIODE LASER MEASUREMENTS OF ABSOLUTE INTENSITIES AND LINEWIDTHS IN THE $\nu_{6}$ BAND OF $^{12}CH_{3}D$ NEAR $8.6 \mu m$

Kalyani Thakur, V. Malathy Devi, C. P. Rinsland, Mary Ann H. Smith

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Abstract

Absolute line intensities were measured at room temperature for 21 transitions in the $\\nu_{6}$ (E) perpendicular band of $^{12}CH_{3}D$ in the $1090-1140 cm^{-1}$ region using a tunable diode laser spectrometer. Although the line intensities were determined with high precision (= 3\\%), the square of the vibrational transition dipole moment matrix element derived from each line intensity varied by several percent (= 20\\%) indicating intensity perturbations, possibly caused by Coriolis interactions with the nearby $\\nu_{3}$ parallel-type fundamental. Room temperature air-and nitrogen-broadened halfwidths have also been determined for these lines. The average of the ratios of nitrogen- to air-broadened halfwidths was 1.01 with a standard deviation of 0.01, indicating almost equal broadening efficiencies for nitrogen and air. Room temperature self-broadened halfwidths were determined for two transitions with a mean value of $0.081 \\pm 0.010 cm^{-1} atm^{-1}$.

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Absolute line intensities were measured at room temperature for 21 transitions in the $\\nu_{6}$ (E) perpendicular band of $^{12}CH_{3}D$ in the $1090-1140 cm^{-1}$ region using a tunable diode laser spectrometer. Although the line intensities were determined with high precision (= 3\\%), the square of the vibrational transition dipole moment matrix element derived from each line intensity varied by several percent (= 20\\%) indicating intensity perturbations, possibly caused by Coriolis interactions with the nearby $\\nu_{3}$ parallel-type fundamental. Room temperature air-and nitrogen-broadened halfwidths have also been determined for these lines. The average of the ratios of nitrogen- to air-broadened halfwidths was 1.01 with a standard deviation of 0.01, indicating almost equal broadening efficiencies for nitrogen and air. Room temperature self-broadened halfwidths were determined for two transitions with a mean value of $0.081 \\pm 0.010 cm^{-1} atm^{-1}$.

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Available abstract

Absolute line intensities were measured at room temperature for 21 transitions in the $\\nu_{6}$ (E) perpendicular band of $^{12}CH_{3}D$ in the $1090-1140 cm^{-1}$ region using a tunable diode laser spectrometer. Although the line intensities were determined with high precision (= 3\\%), the square of the vibrational transition dipole moment matrix element derived from each line intensity varied by several percent (= 20\\%) indicating intensity perturbations, possibly caused by Coriolis interactions with the nearby $\\nu_{3}$ parallel-type fundamental. Room temperature air-and nitrogen-broadened halfwidths have also been determined for these lines. The average of the ratios of nitrogen- to air-broadened halfwidths was 1.01 with a standard deviation of 0.01, indicating almost equal broadening efficiencies for nitrogen and air. Room temperature self-broadened halfwidths were determined for two transitions with a mean value of $0.081 \\pm 0.010 cm^{-1} atm^{-1}$.

Key concepts: Physics, Library science, Engineering physics, Computer science

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TUNABLE DIODE LASER MEASUREMENTS OF ABSOLUTE INTENSITIES AND LINEWIDTHS IN THE $\nu_{6}$ BAND OF $^{12}CH_{3}D$ NEAR $8.6 \mu m$ — Research Paper | ScholarLens