Труды КНЦ вып.5. ГЕЛИОГЕОФИЗИКА. 8/2019(10)

6. Кириллов А.С., Аладьев Г.А. Роль реакции N2(A3Lu',v)+0 в свечении зеленой линии и колебательной кинетике молекулярного азота в высокоширотной верхней атмосфере // Космические исследования. 1998. т.36. №5. с.451-457. 7. McDade I.C., Llewellyn E.J. A comment on proposed mechanisms for the excitation of O('S) in the aurora // Planet. Space Sci. 1984. v. 32. №9. p. 1195-1198. 8. Piper L.G. The excitation of O('S) in the reaction between N 2 (A3LU) and 0 (3P) // J. Chem. Phys. 1982. v. 77. № 5. p. 2373-2377. 9. Gilmore F.R., Laher R.R., Espy P.J. Franck-Condon factors, r-centroids, electronic transitionmoments, and Einstein coefficients for many nitrogen and oxygen band systems / / J. Phys. Chem. Ref. Data. 1992. v. 21. №5. p. 1005-1107. 10. Kirillov A.S. Electronic kinetics of molecular nitrogen and molecular oxygen in high- latitude lower thermosphere and mesosphere // Ann. Geophys. 2010. v. 28. №1. p. 181- 192. 11. Dreyer J.W., Pemer D., Roy C.R Rate constants for the quenching of N 2 (A3LU.v..\=0-8) by CO, C02, NH3, NO, and 0 2// J. Chem. Phys. 1974. v. 61. №8. p. 3164-3169. 12. Piper L.G., Caledonia G.E., Kennealy J.P. Rate constants for deactivation of N 2 ^ ) v'=0,l by 0 2// J. Chem. Phys. 1981. v. 74. №5. p. 2888-2895. 13. Thomas J.M., Kaufman F. Rate constants of the reactions of metastable N 2 (A3LU) in v=0,l,2, and 3 with ground state O 2 and О // J. Chem. Phys. 1985. v. 83. № 6. p. 2900- 2903. 14. Kirillov A.S. Excitation and quenching of ultraviolet nitrogen bands in the mixture ofN 2 and O 2 molecules // J. Quant. Spec. Rad. Trans. 2011. v. 112. №13. p.2164-2174. 15. Thomas J.M., Kaufman F., Golde M.F. Rate constants for electronic quenching of N2(A3Zu+,v=0-6) by 0 2, NO, CO, N20 , and C2H4 // J. Chem. Phys. 1987. v. 86. №12. p. 6885-6892.. 16. Коновалов В.П. Деградационный спектр электронов в азоте, кислороде и воздухе // ЖТФ, 1993, т.63, №3, с.23-33. 17. Kirillov A.S., Werner R , Guineva V. The influence of metastable molecular nitrogen N2(A3Z u +) on the electronic kinetics of CO molecules // Chem. Phys. Lett. 2017. v. 685. p. 95-102. 18. De LaHaye V.,Waite J.H., Cravens T.E., Bougher S.W., Robertson I.P., Bell J.M. Heating Titan's upper atmosphere/ / J. Geophys. Res. 2008. v.113. №A11. A11314. 19. Campbell L., Kato H., Brunger M.J., Bradshaw M.D. Electron-impact excitation heating rates in the atmosphere of Titan // J. Geophys. Res. 2010. v. 115. № A9. A09320. 20. Bhardwaj A., Jain S.K. Production ofN 2 Vegard-Kaplan and other triplet band emissions in the dayglow of Titan // Icarus. 2012. v. 218. №2. p. 989-1005. 21. Jain S.K., Bhardwaj A. Production of N 2 Vegard-Kaplan and Lyman-Birge-Hopfield emissions on Pluto // Icarus. 2015. v. 246. p. 285-290. 22. Lawas P., Yelle R.V., Heays A.N., Campbell L., Brunger M.J., Galand М., Vuitton V. N 2 state population in Titan’s atmosphere // Icarus. 2015. v. 260. p.29-59. Сведения об авторах Кириллов Андрей Серафимович, Д.ф.-м.н., зав. лабораторией, Полярный геофизический институт, Апатиты E-mail: kirillov@pgia.ru 259

RkJQdWJsaXNoZXIy MTUzNzYz