Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature

Lee MP, Kienle R, Kohse-Höinghaus K (1994)
Applied Physics B 58(6): 447-457.

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Total rotational energy transfer rates have been measured at 1330 K for specific rotational levels in the OH A 2[Sigma]+, v'=0 state in collisions with H 20. Rotational levels ranging from N'=0 to 15 were studied. Measurements were performed in the post-flame region of a stoichiometric H2/O2/He flame operating at 25 mbar. Quenching rates following excitation of individual upper rotational states were also measured. The RET and quenching rates both exhibit monotonic decreases with increasing rotational quantum number.
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Lee MP, Kienle R, Kohse-Höinghaus K. Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature. Applied Physics B. 1994;58(6):447-457.
Lee, M. P., Kienle, R., & Kohse-Höinghaus, K. (1994). Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature. Applied Physics B, 58(6), 447-457.
Lee, M. P., Kienle, R., and Kohse-Höinghaus, K. (1994). Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature. Applied Physics B 58, 447-457.
Lee, M.P., Kienle, R., & Kohse-Höinghaus, K., 1994. Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature. Applied Physics B, 58(6), p 447-457.
M.P. Lee, R. Kienle, and K. Kohse-Höinghaus, “Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature”, Applied Physics B, vol. 58, 1994, pp. 447-457.
Lee, M.P., Kienle, R., Kohse-Höinghaus, K.: Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature. Applied Physics B. 58, 447-457 (1994).
Lee, M. P., Kienle, R., and Kohse-Höinghaus, Katharina. “Measurements of rotational energy transfer and quenching in OH A 2[Sigma]+, v'=0 at elevated temperature”. Applied Physics B 58.6 (1994): 447-457.
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