Выпуски

 / 

1984

 / 

Август

  

Обзоры актуальных проблем


Концентрационное тушение некогерентных возбуждений в растворах

Введение. Феноменология. Статическое тушение. Делокализация возбужения. Уход возбуждения. Учет возврата. Кинетика делокализации. Коэффициент диффузии. Диффузионное тушение. Стационарное тушение. Тушащий слой. Концентрационная зависимость k. Нестационарное тушение. Прыжковое тушение. Марковская модель. Концентрационная зависимость k. Кинетика тушения. Корреляция вероятностей тушения. Учет случайного расположения доноров. Разделение механизмов и стадий тушения. Обменное тушение. Дипольное тушение. Кинетический предел. Квазистатическое тушение. Самотушение. Трудности теории непрерывных случайных блужданий. Учет возврата возбуждения. Тушащие пары. Статическое самотушение. Экспериментальное подтверждение теории. Межатомный перенос возбуждения. Молекулярный перенос возбуждения. Перенос спинового возбуждения. Перенос колебательного возбуждения. Ограничения общности. Заключение. Цитированная литература.

Текст pdf (3,5 Мб)
English fulltext is available at DOI: 10.1070/PU1984v027n08ABEH004062
PACS: 66.30.Dn, 72.20.Ee (все)
DOI: 10.3367/UFNr.0143.198408b.0553
URL: https://ufn.ru/ru/articles/1984/8/b/
Цитата: Бурштейн А И "Концентрационное тушение некогерентных возбуждений в растворах" УФН 143 553–600 (1984)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

English citation: Burshtein A I “Concentration quenching of noncoherent excitation in solutionsSov. Phys. Usp. 27 579–606 (1984); DOI: 10.1070/PU1984v027n08ABEH004062

Статьи, ссылающиеся на эту (150) ↓ Похожие статьи (20)

  1. Lozano C G, Chacaliaza-Ricaldi J et al Springer Series in Optical Sciences Vol. A Brief Guide to Optical Spectroscopy of Trivalent Rare Earth Ions in GlassesMultiphonon Processes and Energy Transfer Processes247 Chapter 6 (2026) p. 67
  2. Halimski I, Streckaite S et al The Journal of Chemical Physics 164 (18) (2026)
  3. Kucherenko M G, Rusinov A P J. Exp. Theor. Phys. 140 (1-3) 1 (2025)
  4. Adachi S ECS J. Solid State Sci. Technol. 13 (12) 126001 (2024)
  5. Pini F, Knighton R C et al Advanced Optical Materials 12 (23) (2024)
  6. He F Q, Song E H, Zhang Q Y J. Mater. Chem. C 12 (37) 15137 (2024)
  7. van Aarle C, Ingham R et al Advanced Optical Materials 12 (35) (2024)
  8. Barysaitė S, Chmeliov Je et al J. Phys. Chem. B 128 (20) 4887 (2024)
  9. Tamošiūnaitė Justė, Streckaitė S et al Chemical Physics 572 111949 (2023)
  10. Rybaltovsky A A, Bazakutsa A P et al J. Opt. Soc. Am. B 40 (5) 1182 (2023)
  11. Koshimizu M Phosphors for Radiation Detectors 1 (2022) p. 39
  12. Benrejeb H, Soler-Carracedo K et al Optical Materials 131 112604 (2022)
  13. Shi W, Kataoka T et al Materials Letters 304 130561 (2021)
  14. Popov A V, Fedorenko S G et al Journal of Alloys and Compounds 822 153654 (2020)
  15. Zhou J, Li Ch et al Nat Commun 11 (1) (2020)
  16. Fedotov A, Pominova D et al Optical Components and Materials XVI, (2019) p. 26
  17. Carrasco I, Laversenne L et al Opt. Express 27 (23) 33217 (2019)
  18. Obodovskiy I Radiation (2019) p. 207
  19. Garcia-Santamaria F, Murphy J E et al ECS J. Solid State Sci. Technol. 7 (1) R3030 (2018)
  20. Fedorenko S G, Popov A V et al Journal of Luminescence 198 138 (2018)
  21. Carrasco I, Agazzi L et al 2018 20th International Conference on Transparent Optical Networks (ICTON), (2018) p. 1
  22. Steinke M, Kracht D et al 2017 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC), (2017) p. 1
  23. Ter-Mikirtychev V V Encyclopedia of Spectroscopy and Spectrometry (2017) p. 481
  24. Lupei V, Lupei A Journal of Luminescence 169 426 (2016)
  25. Deng R, Wang Ju et al J. Am. Chem. Soc. 138 (49) 15972 (2016)
  26. Samsonova E V, Popov A V et al Journal of Luminescence 169 722 (2016)
  27. Lupei V, Lupei A et al Journal of Luminescence 170 594 (2016)
  28. Yefimova S L, Rekalo A M et al Appl. Phys. A 116 (4) 2131 (2014)
  29. Razdobreev I, Hamzaoui H E et al Opt. Express 22 (5) 5659 (2014)
  30. Samsonova E V, Popov A V et al Phys. Chem. Chem. Phys. 16 (48) 26806 (2014)
  31. Rempel S V, Podkorytova A A, Rempel A A Phys. Solid State 56 (3) 568 (2014)
  32. Orlovskii Yu V, Popov A V et al Journal of Luminescence 139 91 (2013)
  33. Agazzi L, Wörhoff K, Pollnau M J. Phys. Chem. C 117 (13) 6759 (2013)
  34. Sveshnikova E B, Mironov L Yu et al Opt. Spectrosc. 113 (6) 607 (2012)
  35. Ferraro F, Hadad C Z J. Phys. Chem. C 116 (12) 7134 (2012)
  36. Fedorenko S G, Orlovskii Yu V, Samsonova E V Journal of Luminescence 131 (11) 2409 (2011)
  37. Svechnikov N Yu J. Surf. Investig. 5 (1) 21 (2011)
  38. Basiev T T, Basieva I T, Doroshenko M E Uspekhi Fizicheskikh Nauk 181 (12) 1334 (2011)
  39. Sveshnikova E B, Dudar’ S S, Ermolaev V L Opt. Spectrosc. 111 (2) (2011)
  40. Orlovskii Yu V, Basiev T T et al Journal of Luminescence 131 (3) 449 (2011)
  41. Kapinus E I Russ. J. Phys. Chem. 85 (4) 668 (2011)
  42. Setlur A A, Shiang J J, Vess C J J. Phys. Chem. C 115 (8) 3475 (2011)
  43. Burshtein Z Opt. Eng 49 (9) 091005 (2010)
  44. Maksimov A A, Yakovlev D R et al Phys. Rev. B 82 (3) (2010)
  45. Ferraro F, Hadad C Z J. Phys. Chem. A 114 (15) 5068 (2010)
  46. Fedorenko S G, Burshtein A I J. Phys. Chem. A 114 (13) 4558 (2010)
  47. Grampp G, Justinek M et al Photochem Photobiol Sci 8 (11) 1595 (2009)
  48. Zapunidi S A, Krylova Yu V, Paraschuk D Yu Phys. Rev. B 79 (20) (2009)
  49. Oshanin G, Tachiya M Phys. Rev. E 78 (3) (2008)
  50. Zapunidi S A, Paraschuk D Yu J. Exp. Theor. Phys. 107 (6) 1079 (2008)
  51. Kucherenko M G, Palem A A Tech. Phys. Lett. 34 (4) 338 (2008)
  52. Sergeyev S, Popov S J. Eur. Opt. Soc.-Rapid Publ. 2 07027 (2007)
  53. Khoptyar D, Gierschner J, Egelhaaf H-J J. Opt. Soc. Am. B 24 (7) 1527 (2007)
  54. Liu Ch, Liu Ju et al Journal of Luminescence 122-123 970 (2007)
  55. Solovieva N, Nikl M, Nitsch K Optical Materials 30 (1) 113 (2007)
  56. Sergeyev S, Popov S et al J. Opt. Soc. Am. B 23 (8) 1540 (2006)
  57. Kudryasheva N S Journal of Photochemistry and Photobiology B: Biology 83 (1) 77 (2006)
  58. Lepoutre S, Boyer D, Mahiou R Optical Materials 28 (6-7) 592 (2006)
  59. Jones G C, Houde-Walter S N Opt. Lett. 30 (16) 2122 (2005)
  60. Gladkikh V, Burshtein A I Chemical Physics 317 (1) 16 (2005)
  61. Khoptyar D, Sergeyev S, Jaskorzynska B J. Opt. Soc. Am. B 22 (3) 582 (2005)
  62. Khoptyar D, Sergeyev S, Jaskorzynska B IEEE J. Quantum Electron. 41 (2) 205 (2005)
  63. Deryabin M I, Vashkevich O V, Shalnev A Yu Russian Physics Journal 47 (5) 567 (2004)
  64. Lupei A, Lupei V et al Journal of Applied Physics 96 (6) 3057 (2004)
  65. Deryabin M I, Tishchenko A B Russ Phys J 47 (10) 965 (2004)
  66. Hilczer M, Bandyopadhyay T, Tachiya M Journal of Photochemistry and Photobiology A: Chemistry 166 (1-3) 33 (2004)
  67. Sorokina I T Topics in Applied Physics Vol. Solid-State Mid-Infrared Laser SourcesCrystalline Mid-Infrared Lasers89 Chapter 7 (2003) p. 262
  68. Przhevuskii A K, Nikonorov N V Optical Materials 21 (4) 729 (2003)
  69. Lupei V Optical Materials 19 (1) 95 (2002)
  70. Bodunov E N, Berberan-Santos M N, Martinho J M G High Energy Chemistry 36 (4) 245 (2002)
  71. Lupei V, Lupei A et al J. Opt. Soc. Am. B 19 (3) 360 (2002)
  72. Sergeyev S V Handbook of Advanced Electronic and Photonic Materials and Devices (2001) p. 247
  73. Syt’ko V V, Umreiko D S Journal of Applied Spectroscopy 68 (3) 377 (2001)
  74. Ivanov K L, Lukzen N N et al The Journal of Chemical Physics 114 (4) 1754 (2001)
  75. Jaskorzyńska B, Sergeyev S et al Acta Phys. Pol. A 99 (1) 147 (2001)
  76. Golding P S, Jackson S D et al Phys. Rev. B 62 (2) 856 (2000)
  77. Burshtein A I Advances in Chemical Physics Vol. Advances in Chemical PhysicsUnified Theory of Photochemical Charge Separation114 1 (2000) p. 419
  78. Sergeyev S V, Jaskorzynska B Phys. Rev. B 62 (23) 15628 (2000)
  79. Bagnich S A Phys. Solid State 42 (10) 1775 (2000)
  80. Kudryasheva N S Luminescence 14 (4) 199 (1999)
  81. Zuegel J D, Seka W Appl. Opt. 38 (12) 2714 (1999)
  82. Ostroumov V, Jensen T et al J. Opt. Soc. Am. B 15 (3) 1052 (1998)
  83. Zharikov E V, Smirnov V A Wide-Gap Luminescent Materials: Theory and Applications Chapter 2 (1997) p. 13
  84. Gorbatsevich S K, Gulis I M, Sakharuk S A J Appl Spectrosc 64 (6) 740 (1997)
  85. Zubenko D A, Noginov M A et al Phys. Rev. B 55 (14) 8881 (1997)
  86. Bagnich S A Phys. Solid State 39 (8) 1331 (1997)
  87. Kucherenko M G Applications of Photonic Technology 2 Chapter 26 (1997) p. 157
  88. Goldanskii V I, Kozhushner M A, Trakhtenberg L I J. Phys. Chem. B 101 (48) 10024 (1997)
  89. Zubenko D A, Noginov M A et al Advanced Solid State Lasers, (1997) p. SC19
  90. Philipsen J L, Bjarklev A IEEE J. Quantum Electron. 33 (5) 845 (1997)
  91. Krissinel’ E B, Agmon N J. Comput. Chem. 17 (9) 1085 (1996)
  92. Noginov M A, Caulfield H J et al Optical Materials 5 (1-2) 97 (1996)
  93. Scalbert D Physica Status Solidi (b) 193 (1) 189 (1996)
  94. Maciejewski A, Sikorski M et al Journal of Photochemistry and Photobiology A: Chemistry 94 (2-3) 119 (1996)
  95. Noginov M A, Caulfield H J et al Optical Materials 6 (4) 245 (1996)
  96. Barzykin A V, Tachiya M Macromolecules 29 (19) 6351 (1996)
  97. Noginov M A, Venkateswarlu P, Mahdi M J. Opt. Soc. Am. B 13 (4) 735 (1996)
  98. Wang J, Simkin D J Phys. Rev. B 52 (5) 3309 (1995)
  99. Kipriyanov A A, Gopich I V, Doktorov A B Chemical Physics 191 (1-3) 101 (1995)
  100. Jang S, Shin K J, Lee S The Journal of Chemical Physics 102 (2) 815 (1995)
  101. Kipriyanov A A, Gopich I V, Doktorov A B Chemical Physics 187 (3) 251 (1994)
  102. Oshanin G, Moreau M, Burlatsky S Advances in Colloid and Interface Science 49 1 (1994)
  103. Suzuki H, Tombrello T A et al IEEE Trans. Nucl. Sci. 41 (4) 681 (1994)
  104. Nilsson J, Jaskorzynska B, Blixt P IEEE Photon. Technol. Lett. 5 (12) 1427 (1993)
  105. Nilsson J, Jaskorzynska B, Blixt P Optical Amplifiers and Their Applications, (1993) p. MD19
  106. Noginov M A, Jenssen H P, Cassanho A Advanced Solid State Lasers, (1993) p. LL4
  107. Suzuki H, Tombrello T A et al 1993 IEEE Conference Record Nuclear Science Symposium and Medical Imaging Conference, (1993) p. 14
  108. Dinndorf K M, Cassanho A et al Advanced Solid State Lasers, (1993) p. LM7
  109. Barzykin A V, Barzykina N S, Fox M A Chemical Physics 163 (1) 1 (1992)
  110. Hashmi F M, Powell R C, Boulon G Optical Materials 1 (4) 281 (1992)
  111. Burshtein A I, Storozhev A V Chemical Physics 164 (1) 47 (1992)
  112. Anisimov O A Topics in Molecular Organization and Engineering Vol. Radical Ionic SystemsIon Pairs in Liquids6 Chapter 10 (1991) p. 285
  113. Mikhelashvili M S, Mikhaeli A M Chemical Physics Letters 185 (3-4) 347 (1991)
  114. Gaisenok V A, Sergeev S V J Appl Spectrosc 54 (5) 450 (1991)
  115. Kapinus E I Chemical Physics 152 (1-2) 83 (1991)
  116. Bodunov E N J Appl Spectrosc 55 (5) 1073 (1991)
  117. Mikhelashvili M S, Feitelson J, Dodu M Chemical Physics Letters 171 (5-6) 575 (1990)
  118. Burlatsky S F, Oshanin G S, Mogutov A V Phys. Rev. Lett. 65 (25) 3205 (1990)
  119. Blumen A, Schnörer H Angew. Chem. Int. Ed. Engl. 29 (2) 113 (1990)
  120. Blumen A, Schnörer H Angewandte Chemie 102 (2) 158 (1990)
  121. Kucherenko M G, Mel’nik M P J Appl Spectrosc 53 (3) 917 (1990)
  122. Burlatsky S F, Chernoutsan A I Physics Letters A 145 (1) 56 (1990)
  123. Schnörer H, Blumen A et al Chemical Physics Letters 160 (1) 80 (1989)
  124. Pines D, Huppert D Israel Journal of Chemistry 29 (4) 473 (1989)
  125. Jennings R C, Zucchelli G, Garlaschi F M Biochimica et Biophysica Acta (BBA) - Bioenergetics 975 (1) 29 (1989)
  126. Kapinus E I, Ganzha V A et al Theor Exp Chem 25 (2) 146 (1989)
  127. Burlatsky S F, Oshanin G S, Ovchinnikov A A Physics Letters A 139 (5-6) 241 (1989)
  128. Kaschke M, Åkesson E et al Chemical Physics 134 (1) 85 (1989)
  129. Sienicki K, Mattice W L Journal of Luminescence 43 (4) 233 (1989)
  130. Maciejewski A Chemical Physics Letters 164 (2-3) 166 (1989)
  131. Sienicki K, Mattice W L The Journal of Chemical Physics 90 (11) 6187 (1989)
  132. Fedorenko S G, Burshtein A I Chemical Physics 128 (1) 185 (1988)
  133. Burshtein A I Chemical Reactivity in Liquids Chapter 30 (1988) p. 361
  134. De Vries A J, Minks B P, Blasse G Journal of Luminescence 39 (3) 153 (1988)
  135. Shalaev V M, Stockman M I Z Phys D - Atoms, Molecules and Clusters 10 (1) 71 (1988)
  136. Smirnov V A, Shcherbakov I A IEEE J. Quantum Electron. 24 (6) 949 (1988)
  137. De Vries A J, Hazenkamp M F, Blasse G Journal of Luminescence 42 (5) 275 (1988)
  138. Blasse G, Kiliaan H S, de Vries A J Journal of Luminescence 40-41 639 (1988)
  139. Sienicki K, Winnik M A Chemical Physics 121 (2) 163 (1988)
  140. BASIEV T T, MALYSHEV V A, PRZHEVUSKII A K Modern Problems in Condensed Matter Sciences Vol. Spectroscopy of Solids Containing Rare Earth IonsSpectral Migration of Excitations in Rare-Earth Activated Glasses21 (1987) p. 275
  141. Sienicki K, Winnik M A The Journal of Chemical Physics 87 (5) 2766 (1987)
  142. Kaplan I G, Miterev A M Advances in Chemical Physics Vol. Advances in Chemical PhysicsInteraction of Charged Particles with Molecular Medium and Track Effects in Radiation Chemistry68 1 (1987) p. 255
  143. Prokhorov A M Успехи физических наук 148 (01) 7 (1986)
  144. Phillips P The Journal of Chemical Physics 84 (2) 976 (1986)
  145. Blumen A, Klafter J, Zumofen G Physic and Chemistry of Materials with Low-Dimensional Structures Vol. Optical Spectroscopy of GlassesModels for Reaction Dynamics in Glasses1 Chapter 5 (1986) p. 199
  146. Burshtein A I, Doktorov A B, Morozov V A Chemical Physics 104 (1) 1 (1986)
  147. Lukzen N N, Doktorov A B, Burshtein A I Chemical Physics 102 (3) 289 (1986)
  148. Burshtein A I Journal of Luminescence 34 (4) 201 (1985)
  149. Burshtein A I Journal of Luminescence 34 (4) 167 (1985)
  150. Fedorenko S G, Burshtein A I Chemical Physics 98 (3) 341 (1985)

© Успехи физических наук, 1918–2026
Электронная почта: ufn@ufn.ru Телефоны и адреса редакции О журнале Пользовательское соглашение