Issues

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1997

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November

  

Reviews of topical problems


Processes in plasma and gases involving clusters


Joint Institute for High Temperatures, Russian Academy of Sciences, ul. Izhorskaya 13/19, Moscow, 127412, Russian Federation

Peculiarities of cluster properties are considered and processes involving them discussed. Generation methods and applications in material fabrication are described. The kinetics of cluster growth in expanding vapor is analysed. The absorption and emission properties of clusters as systems of bound atoms are examined. The properties of a cluster plasma, i.e., a cluster-containing ionized gas, are discussed in relation to cluster light sources.

Fulltext pdf (623 KB)
Fulltext is also available at DOI: 10.1070/PU1997v040n11ABEH000305
PACS: 36.40.Vz, 36.40.Wa, 61.46.+w, 85.42.+m (all)
DOI: 10.1070/PU1997v040n11ABEH000305
URL: https://ufn.ru/en/articles/1997/11/b/
000071302300002
Citation: Smirnov B M "Processes in plasma and gases involving clusters" Phys. Usp. 40 1117–1147 (1997)
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Оригинал: Смирнов Б М «Процессы в плазме и газах с участием кластеров» УФН 167 1169–1200 (1997); DOI: 10.3367/UFNr.0167.199711b.1169

References (175) Cited by (89) ↓ Similar articles (20)

  1. Sviridov A N, Saginov L D, Khafizov R Z J. Commun. Technol. Electron. 70 (6) 243 (2025)
  2. Myshkin V F, Khan V A et al Russ Phys J 67 (2) 236 (2024)
  3. (2ND INTERNATIONAL CONFERENCE ON ADVANCED EARTH SCIENCE AND FOUNDATION ENGINEERING (ICASF 2023): Advanced Earth Science and Foundation Engineering) Vol. 2ND INTERNATIONAL CONFERENCE ON ADVANCED EARTH SCIENCE AND FOUNDATION ENGINEERING (ICASF 2023): Advanced Earth Science and Foundation EngineeringRarefied supersonic jet of metal vapor with a light carrier gas: Cluster formation processesN. Y.BykovS. A.FyodorovA. I.SafonovS. V.StarinskiyA. V.Bulgakov3050 (2024) p. 120003
  4. Sviridov A N, Saginov L D J. Commun. Technol. Electron. 69 (4-6) 158 (2024)
  5. Sviridov A N, Saginov L D J. Commun. Technol. Electron. 68 (S2) S176 (2023)
  6. Wȩgrzyński Łukasz, Fok T ’ ’р J Clust Sci 34 (1) 587 (2023)
  7. Bulgakov A V, Bykov N Y et al Materials 16 (13) 4876 (2023)
  8. Pisarev A, Pisareva S Modeling of systems and processes 16 (1) 67 (2023)
  9. Janulewicz K A, WTgrzyński Łukasz ’ ’р Opt. Express 30 (26) 47867 (2022)
  10. Vishnyakov V I Ukr. J. Phys. 66 (4) 303 (2021)
  11. Okunev V D, Samoilenko Z A et al Phys. Solid State 63 (4) 603 (2021)
  12. Smolanov N A J. Phys.: Conf. Ser. 1588 (1) 012047 (2020)
  13. Vakula V L, Danylchenko O G et al Low Temperature Physics 46 (2) 145 (2020)
  14. Vishnyakov V I, Kozytskyi S V, Ennan A A Aerosol Sci Eng 3 (2) 49 (2019)
  15. Bykov N Yu, Safonov A I et al Tech. Phys. 64 (6) 776 (2019)
  16. Vishnyakov V I, Kozytskyi S V, Ennan A A Journal Of Aerosol Science 137 105439 (2019)
  17. Nechai A N, Perekalov A A et al Tech. Phys. 64 (11) 1566 (2019)
  18. Vishnyakov V I, Kiro S A et al Ukr. J. Phys. 64 (5) 392 (2019)
  19. Krivenko I, Smirnova M MPCS (4) 64 (2019)
  20. Markov A A, Filimonov I A J. Phys.: Conf. Ser. 1009 012040 (2018)
  21. Vishnyakov V I, Kiro S A et al Aerosol Sci Eng 2 (3) 109 (2018)
  22. Smirnov B M ’pс’’kh’ ф’’’ch’с’’kh ’’у’ 187 (12) 1329 (2017) [Smirnov B M Phys.-Usp. 60 (12) 1236 (2017)]
  23. Stranak V, Hippler R GasBPhase Synthesis of Nanoparticles 1 (2017) p. 203
  24. Vishnyakov V I, Kiro S A et al Journal Of Aerosol Science 113 178 (2017)
  25. Nechay A N, Salashchenko N N, Chkhalo N I J. Surf. Investig. 11 (3) 496 (2017)
  26. Koten M A, Voeller S A et al Journal of Applied Physics 119 (11) (2016)
  27. Doronin Yu S, Vakula V L et al Low Temperature Physics 42 (2) 156 (2016)
  28. Poletaev N I Combust Explos Shock Waves 51 (4) 444 (2015)
  29. Maturilli A, Shiryaev A A et al Spectroscopy Letters 47 (6) 446 (2014)
  30. Kim H, Park Ch-S, Han M-S Optics Communications 325 68 (2014)
  31. Kim H, Kim W K et al Infrared Physics & Technology 67 49 (2014)
  32. Vishnyakov V I Phys. Rev. E 85 (2) (2012)
  33. Shalin A S, Kadochkin A S J Appl Spectrosc 79 (1) 113 (2012)
  34. Fundamentals of Ionized Gases 1 (2011) p. 195
  35. Vishnyakov V I, Kiro S A, Ennan A A J. Phys. D: Appl. Phys. 44 (21) 215201 (2011)
  36. Smirnov B M Uspekhi Fizicheskikh Nauk 181 (7) 713 (2011)
  37. Fundamentals of Ionized Gases 1 (2011) p. 359
  38. Kim H, Lim S Ch, Lee Y H Physics Letters A 375 (27) 2661 (2011)
  39. Bulyarskii S V Tech. Phys. 56 (11) 1605 (2011)
  40. Cluster Processes in Gases and Plasmas 1 (2010) p. 423
  41. Yu S-Ja, Youn S J, Kim H Physica B: Condensed Matter 405 (2) 638 (2010)
  42. Bulyarskii S V, Pyatilova O V et al Semiconductors 44 (13) 1718 (2010)
  43. Kashtanov P V, Smirnov B M High Temp 48 (6) 846 (2010)
  44. Bykov N Yu Thermophys. Aeromech. 16 (2) 177 (2009)
  45. Akimov V M, Kolesnikova L I et al Russ. J. Phys. Chem. B 3 (5) 743 (2009)
  46. Bykov N Yu, Lukyanov G A, Simakova O I J Appl Mech Tech Phy 50 (1) 86 (2009)
  47. Vishnyakov V I Phys. Rev. E 78 (5) (2008)
  48. Makarov G N Uspekhi Fizicheskikh Nauk 178 (4) 337 (2008)
  49. Jegenyes N, Etchepare J et al Appl. Phys. A 91 (3) 385 (2008)
  50. Lukyanov G A, Simakova O I, Bykov N Yu Tech. Phys. 53 (1) 24 (2008)
  51. Lukyanov G A, Simakova O I, Bykov N Yu Tech. Phys. 53 (1) 31 (2008)
  52. ’F’shт’’’’ ’z ’E, ’l’’р’’’ ’G ’a, Kh’’’’’р ’i Uspekhi Fizicheskikh Nauk 177 (5) 473 (2007)
  53. ’Fр’’’’’ ’E ’z, ’l’’р’’’ ’G ’a, ’l’’р’’’ ’a ’G Uspekhi Fizicheskikh Nauk 177 (9) 953 (2007)
  54. Torrens F, Castellano G Microelectronics Journal 38 (12) 1109 (2007)
  55. Smirnov B M, Shyjumon I, Hippler R Phys. Scr. 73 (3) 288 (2006)
  56. Shyjumon I, Gopinadhan M et al Thin Solid Films 500 (1-2) 41 (2006)
  57. ’a’’’р’’ ’I ’v Uspekhi Fizicheskikh Nauk 176 (2) 121 (2006)
  58. Veremeechik T F Crystallogr. Rep. 51 (4) 543 (2006)
  59. Bykov N Yu, Lukyanov G A Thermophys. Aeromech. 13 (4) 523 (2006)
  60. Sarkisov G S, Struve K W, McDaniel D H Physics of Plasmas 12 (5) (2005)
  61. Martynenko Yu V, Ognev L I Tech. Phys. 50 (11) 1522 (2005)
  62. Smirnov B M Contrib. Plasma Phys. 44 (5-6) 558 (2004)
  63. Zhukhovitskii D I Colloid Journal 65 (4) 440 (2003)
  64. Smirnov B M Uspekhi Fizicheskikh Nauk 173 (6) 609 (2003)
  65. Grigoryan G G, Leonov A G et al J. Exp. Theor. Phys. 97 (4) 678 (2003)
  66. Krainov V P, Smirnov M B Physics Reports 370 (3) 237 (2002)
  67. Smirnov B M Uspekhi Fizicheskikh Nauk 172 (12) 1411 (2002)
  68. Leonov A G, Rudenko A A et al J. Exp. Theor. Phys. 95 (2) 242 (2002)
  69. Smirnov B M Phys. Scr. 64 (2) 152 (2001)
  70. Smirnov M B, Krainov V P Phys. Scr. 63 (2) 157 (2001)
  71. Frolov G I Tech. Phys. 46 (12) 1537 (2001)
  72. Vol. 5th Korea-Russia International Symposium on Science and Technology. Proceedings. KORUS 2001 (Cat. No.01EX478)The computer simulation of a coagulation process of an aerosol in a gasL.A.ZulkovaA.V.Kozyrev1 (2001) p. 326
  73. Datsyuk V V, Izmailov I A Uspekhi Fizicheskikh Nauk 171 (10) 1117 (2001)
  74. L’vov P E, Svetukhin V V Tech. Phys. Lett. 27 (3) 209 (2001)
  75. Kostyukov I Yu Jetp Lett. 73 (8) 393 (2001)
  76. Smirnov B M Journal of Applied Physics 87 (7) 3279 (2000)
  77. Smirnov B M Phys. Scr. 62 (2-3) 148 (2000)
  78. Zolotukhin I V, Gribanov S A, Popov A A Tech. Phys. Lett. 26 (12) 1070 (2000)
  79. Smirnov B M Jetp Lett. 71 (10) 403 (2000)
  80. Mukhortov V M, Golovko Y I et al Ferroelectrics 247 (1) 75 (2000)
  81. Leonov A G, Rudenko A A et al Tech. Phys. Lett. 26 (5) 382 (2000)
  82. Krainov V P J. Phys. B: At. Mol. Opt. Phys. 33 (8) 1585 (2000)
  83. Krainov V P, Smirnov M B Uspekhi Fizicheskikh Nauk 170 (9) 969 (2000)
  84. Smirnov B M Uspekhi Fizicheskikh Nauk 170 (5) 495 (2000)
  85. Smirnov B M, Weidele H Jetp Lett. 69 (6) 490 (1999)
  86. Ginzburg V L Uspekhi Fizicheskikh Nauk 169 (4) 419 (1999)
  87. Mukhortov V M, Golovko Yu I et al Tech. Phys. 44 (12) 1477 (1999)
  88. Smirnov B M Jetp Lett. 68 (10) 779 (1998)
  89. Zhigalov V S, Frolov G I, Kveglis L I Phys. Solid State 40 (11) 1878 (1998)

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