1932

Abstract

This chapter discusses the impact of two-state models of nonadiabatic coupling by Landau, Zener, Stückelberg, Rosen, and Teller on the current theory of nonadiabatic interaction. In particular, the idea of analytical continuation of classical dynamical variables into complex-valued phase space and time is emphasized. The development of the basic models over the past 30 years has provided us with a useful means of investigating the nonadiabatic molecular dynamics; this is illustrated by the references to our earlier and most recent work.

Loading

Article metrics loading...

/content/journals/10.1146/annurev.physchem.50.1.1
1999-10-01
2024-05-12
Loading full text...

Full text loading...

/deliver/fulltext/physchem/50/1/annurev.physchem.50.1.1.html?itemId=/content/journals/10.1146/annurev.physchem.50.1.1&mimeType=html&fmt=ahah

Literature Cited

  1. Landau LD. 1932. Phys. Z. Sowjetunion 1:88–98
  2. Landau LD. 1932. Phys. Z. Sowjetunion 2:46–51
  3. Zener C. 1932. Proc. R. Soc. London A137:696–702
  4. Stückelberg ECG. 1932. Helv. Phys. Acta 5:369–422
  5. Rosen N, Zener C. 1932. Phys. Rev. 40:502–7
  6. Landau LD, Teller E. 1936. Phys. Z. Sowjetunion 10:34–43
  7. Teller E. 1937. J. Phys. Chem. 1:109–21
  8. Landau LD, Lifshitz EM. 1955. Kvantovaya Mekhanika: Nerelyativistskaya Teoriya. Moscow: Nauka [Google Scholar]
  9. Landau LD, Lifshitz EM. 1958. Quantum Mechanics (Non-Relativistic Theory). Oxford: Pergamon. 1st ed [Google Scholar]
  10. Landau LD, Lifshitz EM. 1977. Quantum Mechanics (Non-Relativistic Theory). Oxford: Pergamon. 3rd ed [Google Scholar]
  11. Kondratiev VN. 1958. Kinetika Khimicheskikh Gasovykh Reaktsii. Moscow: Nauka; 1964. Chemical Kinetics of Gas Reactions. Oxford: Pergamon [Google Scholar]
  12. Mott NF, Massey HSW. 1949. The Theory of Atomic Collisions. Oxford: Clarendon [Google Scholar]
  13. Nikitin EE. 1961. Opt. Spektrosk. 10:443–50
  14. Ovchinnikova MYa. 1964. Opt. Spektrosk. 17:447–55
  15. Bykhovskii VK, Nikitin EE, Ovchinnikova MYa. 1964. Zh. Eksp. Teor. Fiz. 47:750–61
  16. Nikitin EE. 1968. In Chemische Elementarprocesse, ed. H Hartmann 43–55 Berlin: Springer
  17. Nikitin EE, Umanskii SYa. 1979. Neadiabaticheskie Perekhody pri Medlennykch Atomnykh Stolknoveniyakh. (Nonadiabatic Transitions in Slow Atomic Collisions.) Moscow: Atomizdat [Google Scholar]
  18. Nikitin EE, Umanskii SYa. 1984. Theory of Slow Atomic Collisions. Berlin/Heidelberg: Springer [Google Scholar]
  19. Nakamura H, Zhu Ch. 1996. Comm. At. Mol. Phys. 32:249–56
  20. Nikitin EE, Ovchinnikova MYa, Andresen B, de Vries AE. 1976. Chem. Phys. 14:121–35
  21. Grosser J, Nikitin EE, Shushin A, de Vries AE. 1981. Chem. Phys. 56:21–35
  22. Nikitin EE, Ovchinnikova MYa, Shushin AI. 1976. Zh. Eksp. Teor. Fiz. 70:1243–55
  23. Friedrich B, Pick S, Hladek L, Herman Z, Nikitin EE. et al. 1986. J. Chem. Phys. 84:807–12
  24. Nikitin EE, Taulbjerg K. 1994. J. Phys. B 27:2259–68
  25. Nikitin EE, Kondratiev VN. 1973. Dokl. Akad. Nauk SSSR 212:159–70
  26. Havemann U, Zülicke L, Zembekov AA, Nikitin EE. 1979. Chem. Phys. 41:285–97
  27. Nikitin EE. 1962. Discuss. Faraday Soc. 33:14–21
  28. Nikitin EE. 1962. Opt. Spektrosk. 13:761–65
  29. Nikitin EE. 1970. Adv. Quantum Chem. 5:135–84
  30. Bayfield JE, Nikitin EE, Reznikov AI. 1973. Chem. Phys. Lett. 19:471–78
  31. Nikitin EE. 1963. Izv. Akad. Nauk SSSR 27:1996–2002
  32. Demkov YuN. 1964. Sov. Phys. JETP 18:138–42
  33. Osherov VI, Voronin AI. 1994. Phys. Rev. A 49:265–71
  34. Osherov VI, Nakamura H. 1996. J. Chem. Phys. 105:2770–79
  35. Nesbitt NS, O'Rourke SFC, Crothers DSF. 1996. J. Phys. B 29:2515–28
  36. Zhu Ca. 1996. J. Chem. Phys. 105:4159–72
  37. Nikitin EE. 1965. Opt. Spektrosk. 19:161–72
  38. Nikitin EE. 1965. J. Chem. Phys. 43:744–55
  39. Nikitin EE. 1967. Opt. Spektrosk. 22:689–98
  40. Dashevskaya EI, Nikitin EE. 1967. Opt. Spektrosk. 22:866–75
  41. Dashevskaya EI, Nikitin EE, Resnikov AI. 1970. J. Chem. Phys. 53:1175–82
  42. Dashevskaya EI, McCarroll R, Masnou F, Nikitin EE. 1974. Opt. Spektrosk. 37:209–15
  43. Nikitin EE. 1975. Adv. Chem. Phys. 28:317–77
  44. Dashevskaya EI, Voronin AI, Nikitin EE. 1969. Can. J. Phys. 47:1237–48
  45. Dashevskaya EI. 1979. Opt. Spektrosk. 46:423–30
  46. Julienne PS, Vigué J. 1991. Phys. Rev. A 44:4464–81
  47. Dashevskaya EI, Düren R, Nikitin EE. 1991. Chem. Phys. 149:341–51
  48. Dashevskaya EI, Nikitin EE. 1993. J. Chem. Soc. Faraday Trans. 89:1567–71
  49. Berengolts A, Dashevskaya EI, Nikitin EE. 1993. J. Phys. B 26:3847–61
  50. Nikitin EE. 1991. In Mode-Selective Chemistry, ed. J Jortner 401–13 Dordrecht: Kluwer
  51. Nikitin EE, Noda C, Zare RN. 1993. J. Chem. Phys. 89:46–59
  52. Nikitin EE, Pitaevski L. 1994. Phys. Rev. A 49:695–703
  53. Karni Y, Nikitin EE. 1994. J. Chem. Phys. 100:2027–33
  54. Willberg M, Gutmann M, Nikitin EE, Zewail AH. 1993. Chem. Phys. Lett. 201:506–12
  55. Beswick JA, Jortner J. 1981. Adv. Chem. Phys. 47:363–506
  56. Karni Y, Nikitin EE. 1996. Mol. Phys. 89:1327–43
  57. Nikitin EE. 1964. Mol. Phys. 7:389–96
  58. Nikitin EE, Umanskii SYa. 1972. Faraday Discuss. Chem. Soc. 53:7–15
  59. Andreev EA, Nikitin EE. 1976. In Khimiya Plazmy, ed. BM Smirnov 28–65 Moscow: Atomizdat
  60. Nikitin EE. 1965. J. Quantum Spectrosc. Radiat. Transfer. 5:435–47
  61. Nikitin EE. 1967. In Fast Reactions and Primary Processes in Chemical Kinetics, ed. A Gislasson 165–73 Stockholm: Almqvist & Wiksell
  62. Bjerre A, Nikitin EE. 1967. Chem. Phys. Lett. 1:179–82
  63. Nikitin EE, Ovchinnikova MYA, Shalashilin DV. 1987. Chem. Phys. 111:313–26
  64. Herzberg G, Longuet-Higgins HC. 1963. Discuss. Faraday Soc. 35:77–83
  65. Shapere A, Wilczek F. eds 1989. Geometric Phases in Physics. Singapore: World Sci [Google Scholar]
  66. Slonczewski JC. 1963. Phys. Rev. 131:1596–615
  67. Slonczewski JC, Moruzzi VL. 1967. Physics 3:237–50
  68. Nikitin EE. 1968. Dokl. Akad. Nauk SSSR 183:319–35
  69. Nikitin EE. 1968. Theor. Chim. Acta 12:308–17
  70. Voronin AI, Osherov VI. 1974. Zh. Eksp. Teor. Fiz. 66:135–47
  71. Darlison AG. 1987. J. Phys. C 20:5051–65
  72. Atabek O, Lefebvre R. 1992. J. Chem. Phys. 97:3973–80
  73. Zhu C, Nikitin EE, Nakamura H. 1996. J. Chem. Phys. 104:7059–67
  74. Nikitin EE. 1997. J. Chem. Phys. 107:6748–55
  75. Alijah A, Nikitin EE. 1998. Mol. Phys. In press
  76. Dashevskaya EI, Masnou-Seeuws F, Nikitin EE. 1997. J. Phys. B 29:395–414
  77. Dashevskaya EI, Nikitin EE, Perales F, Baudon J. 1997. J. Phys. B 30:703–11
  78. Dashevskaya EI, Nikitin EE. 1997. In Atomic Physics Methods in Modern Research, ed. K Jungmann, J Kowalski, I Reinhard, F Traeger 185–210 Berlin/Heidelberg: Springer
  79. Devdariani A, Tchesnokov E, Dashevskaya EI, Nikitin EE. 1998. Phys. Rev. A 57:4472–82
  80. Dashevskaya EI, Nikitin EE, Oref I. 1995. J. Phys. Chem. 99:10797–801
  81. Koifman I, Dashevskaya EI, Nikitin EE, Troe J. 1995. J. Phys. Chem. 99:15348–53
  82. Nikitin EE. 1996. In Gas Phase Chemical Reaction System, ed. J Wolfrum, H-R Volpp, R Rannacher, J Warnatz 231–42 Berlin/Heidelberg: Springer
  83. Ohmori K, Kurosawa T, Chiba H, Okunishi M, Ueda K. et al. 1995. J. Chem. Phys. 102:7341–50
  84. Berengolts A, Dashevskaya EI, Nikitin EE, Troe J. 1995. Chem. Phys. 195:271–81
  85. Maergoiz AI, Nikitin EE, Troe J, Ushakov VG. 1996. J. Chem. Phys. 105:6277–84
  86. Nikitin EE, Troe J. 1997. Ber. Bunsenges. Phys. Chem. 101:445–58
  87. Maergoiz AI, Nikitin EE, Troe J, Ushakov VG. 1998. J. Chem. Phys. 108:9987–98
  88. Quack M, Troe J. 1974. Ber. Bunsenges. Phys. Chem. 78:240–52
  89. Nikitin EE. 1996. In Atomic, Molecular & Optical Physics Handbook, ed. GWF Drake 561–70 New York: AIP
  90. O'Rourke SFC, Nesbitt BS, Crothers DSF. 1998. Adv. Chem. Phys. 103:217–57
  91. Quack M, Troe J. 1998. In Encyclopedia of Computational Chemistry, ed. PvR Schleyer, NL Allinger, T Clark, J Gasteiger, PA Kollmann, et al 42708–26 Chichester, UK: Wiley
  92. Kondratiev VN, Nikitin EE. 1976. Kinetika i Mekhanizm Gazovykh Reaktsii (Kinetics and Mechanisms of Gas-Phase Reactions). Moscow: Nauka (In Russian [Google Scholar]
  93. Kondratiev VN, Nikitin EE, Reznikov AI, Umanskii SYa. 1976. Termicheskie Bimolekulyarnye Reaktsii v Gazakh (Thermal Bimolecular Reactions in Gases). Moscow: Nauka (In Russian [Google Scholar]
  94. Kondratiev VN, Nikitin EE. 1981. Khimicheskie Protsessy v Gasakh. Moscow: Nauka; 1981. Gas-Phase Reactions. Kinetics and Mechanisms. Berlin/Heidelberg: Springer [Google Scholar]
  95. Nikitin EE. 1970. Teoriya Elementarnykh Atomno-Molekulyarnykh Protsessov v Gazakh. Moscow: Khimiya; 1974. Theory of Elementary Atomic and Molecular Processes in Gases. Oxford: Clarendon [Google Scholar]
  96. Nikitin EE, Zülicke L. 1981. Theorie Chemicher Elementarprozesse. Berlin: Akademie [Google Scholar]
  97. Nikitin EE, Smirnov BM. 1990. Medlennye Atomnye Stolknoveniya (Collisions of Slow Atoms). Moscow: Energoatomizdat (In Russian [Google Scholar]
/content/journals/10.1146/annurev.physchem.50.1.1
Loading
/content/journals/10.1146/annurev.physchem.50.1.1
Loading

Data & Media loading...

  • Article Type: Review Article
This is a required field
Please enter a valid email address
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error