State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners

Jörg A, Meier U, Kienle A, Kohse-Höinghaus K (1992)
Applied Physics B 55(4): 305-310.

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State-to-state rotational energy transfer (RET) coefficients were determined for inelastic collisions of OH (A 2[Sigma]+, v'=0) with N2, CO2, and H20 at 300K. The experimental procedure described previously allows the direct evaluation of state-specific RET coefficients from timeresolved laser-induced fluorescence (LIF) measurements without any assumptions on the RET. The results show strikingly different RET behaviour for the three collision partners. The data can serve as a basis for a comparison with dynamic collision models.
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Jörg A, Meier U, Kienle A, Kohse-Höinghaus K. State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners. Applied Physics B. 1992;55(4):305-310.
Jörg, A., Meier, U., Kienle, A., & Kohse-Höinghaus, K. (1992). State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners. Applied Physics B, 55(4), 305-310.
Jörg, A., Meier, U., Kienle, A., and Kohse-Höinghaus, K. (1992). State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners. Applied Physics B 55, 305-310.
Jörg, A., et al., 1992. State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners. Applied Physics B, 55(4), p 305-310.
A. Jörg, et al., “State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners”, Applied Physics B, vol. 55, 1992, pp. 305-310.
Jörg, A., Meier, U., Kienle, A., Kohse-Höinghaus, K.: State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners. Applied Physics B. 55, 305-310 (1992).
Jörg, Andreas, Meier, Ulrich, Kienle, A., and Kohse-Höinghaus, Katharina. “State-specific rotational energy transfer in OH (A 2[Sigma]+, v'=0) by some combustion-relevant collision partners”. Applied Physics B 55.4 (1992): 305-310.
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