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BIBLIOGRAPHY BIBLIOGRAPHY 172 [234] [235] [236] [237] [238] [239] [240] [241] [242] [243] [244] K. F. Herzfeld. Deactivation of vibration by collision in CO2. Discuss. Faraday Soc., 33:22–27, 1962. L. Campbell, M. J. Brunger, and T. N. Rescigno. Carbon dioxide electron cooling rates in the atmospheres of mars and venus. J. Geophys. Res.: Plan- ets (1991–2012), 113(E8), 2008. K. Anzai, H. Kato, M. Hoshino, H. Tanaka, Y. Itikawa, L. Campbell, M. J. Brunger, S. J. Buckman, H. Cho, and F. Blanco. Cross section data sets for electron collisions with H2,O2, CO, CO2, N2O and H2O. The European Physical Journal D-Atomic, Molecular, Optical and Plasma Physics, 66(2):1–8, 2012. R.C. Auyeung and J. Ried. High vibrational temperatures in optically- pumped co2. Quantum Electronics, IEEE Journal of, 24(3):573–579, 1988. R. L. DeLeon and J. W. Rich. Vibrational energy exchange rates in carbon monoxide. Chem. Phys., 107(2):283–292, 1986. B. F. Gordiets, A. I. Osipov, E. V. Stupochenko, and L. A. Shelepin. Vi- brational relaxation in gases and molecular lasers. Soviet Physics Uspekhi, 15(6):759, 1973. R. D. Sharma and C. A. Brau. Energy transfer in near-resonant molecular collisions due to long-range forces with application to transfer of vibrational energy from ν3 mode of CO2 to N2. J. Chem. Phys, 50(2):924–930, 1969. I. V Adamovich. Three-dimensional analytic model of vibrational energy transfer in molecule-molecule collisions. AIAA journal, 39(10):1916–1925, 2001. L. O. Hocker, M. A. Kovacs, C. K. Rhodes, G. W. Flynn, and A. Javan. Vibrational relaxation measurements in CO2 using an induced-fluorescence technique. Phys. Rev. Lett., 17(5):233, 1966. C. B. Moore, R. E. Wood, B.-L. Hu, and J. T. Yardley. Vibrational energy transfer in CO2 lasers. J. Chem. Phys, 46(11):4222–4231, 1967. J. C. Stephenson and C. B. Moore. Temperature dependence of nearly res- onant vibration-vibration energy transfer in CO2 mixtures. J. Chem. Phys, 56(3):1295–1308, 1972.PDF Image | Understanding CO2 containing non-equilibrium plasmas
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