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- W2080787462 abstract "Time transients of the number density of the hydroxyl radical ground state X2 Pi (v=0) formed in the DC high-energy atmospheric pressure pulsed discharge were measured by means of laser-induced fluorescence. The frequency doubled dye laser was tuned to the A2 Sigma from X2 Pi (v'=1 from v=0) transition at 282 nm while emission at 309 nm from A2 Sigma to X2 Pi (v'=0 to v=0) band, was observed. The discharge peak current Imax varied from 10-2 to 10 A, and the time duration was from 500 ns to 50 mu s. The discharge was operated at repetition rate of 10 Hz. The population of v=0 of OH reaches the steady state within the first 20 mu s of the discharge and its value is independent on the current for Imax>or=0.2 A. The significant build-up of v=0 state population was observed after the discharge pulse. The hydroxyl ground state number density reaches its maximum value approximately 100 mu s after the discharge and is up to three times larger than during the discharge pulse. This increase of v=0 population is attributed to the vibrational relaxation within X2 Pi state." @default.
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- W2080787462 date "1995-01-14" @default.
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- W2080787462 title "Dynamics of OH (X<sup>2</sup>Pi , v=0) in high-energy atmospheric pressure electrical pulsed discharge" @default.
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- W2080787462 doi "https://doi.org/10.1088/0022-3727/28/1/012" @default.
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