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Излучение равномерно движущихся источников (эффект Вавилова—Черенкова, переходное излучение и некоторые другие явления)


Физический институт им. П.Н. Лебедева РАН, Ленинский проспект 53, Москва, 119991, Российская Федерация

Обсуждается излучение равномерно движущихся источников (эффект Вавилова—Черенкова, переходное излучение и некоторые другие явления). Эта область физических исследований родилась в Физическом институте им. П.Н. Лебедева РАН более пятидесяти лет назад и стала органической составной частью современной физики.

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English fulltext is available at DOI: 10.1070/PU1996v039n10ABEH000171
PACS: 41.60.−m, 41.60.Bq, 41.90.+e (все)
DOI: 10.3367/UFNr.0166.199610b.1033
URL: https://ufn.ru/ru/articles/1996/10/b/
Цитата: Гинзбург В Л "Излучение равномерно движущихся источников (эффект Вавилова—Черенкова, переходное излучение и некоторые другие явления)" УФН 166 1033–1042 (1996)
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English citation: Ginzburg V L “Radiation by uniformly moving sources (Vavilov-Cherenkov effect, transition radiation, and other phenomena)Phys. Usp. 39 973–982 (1996); DOI: 10.1070/PU1996v039n10ABEH000171

Список литературы (62) Статьи, ссылающиеся на эту (154) ↓ Похожие статьи (20)

  1. Peric Ju, Snoj L, Radulović V Nuclear Engineering and Technology 58 (3) 104042 (2026)
  2. Mkrtchian V E, Avetisyan H S, Allahverdyan A E Phys. Rev. A 111 (2) (2025)
  3. Labarbe J Proc. R. Soc. A. 481 (2319) (2025)
  4. Sun Zh, Cao L et al Phys. Rev. Lett. 134 (4) (2025)
  5. Potylitsyn A P Jetp Lett. 121 (9) 691 (2025)
  6. Majhi A, Kar T Int J Theor Phys 64 (10) (2025)
  7. Dobrovolskiy O V, Wang Q et al Nat. Nanotechnol. (2025)
  8. Franca O J, Spallek F et al Phys. Rev. A 112 (1) (2025)
  9. Rudenko O V Успехи физических наук 195 (12) 1268 (2025)
  10. Takabayashi Y, Takeda H et al Phys. Rev. A 111 (6) (2025)
  11. Balanov A, Gorlach A et al Adv. Opt. Photon. 17 (4) 726 (2025)
  12. Xu 徐 X 新, Xie 谢 J 锦 et al Chinese Phys. B 34 (12) 120301 (2025)
  13. Dudès A, Dorchies F, Fourment C IEEE Trans. Plasma Sci. 53 (10) 2581 (2025)
  14. Schützhold R Progress in Particle and Nuclear Physics 145 104198 (2025)
  15. Shi X, Lee W W et al Progress in Quantum Electronics 102 100577 (2025)
  16. ANDRÉ Jean‐Michel, LE GUEN Karine, JONNARD Philippe X‐ray Radiation and Artificial Bragg Structures 1 (2025) p. 189
  17. Shchagin A, Kube G et al Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1072 170235 (2025)
  18. Gorlova D A, Tsymbalov I N et al Laser Phys. Lett. 21 (3) 035001 (2024)
  19. Stamatopoulou P E, Zhao W et al Phys. Rev. Research 6 (1) (2024)
  20. Karnieli A, Rivera N et al Applied Physics Reviews 11 (3) (2024)
  21. Harms J S, Yuan H Y, Duine R A AIP Advances 14 (2) (2024)
  22. Shi X, Wong L W W et al Nat Commun 15 (1) (2024)
  23. Parkevich E V, Shpakov K V et al Journal of Applied Physics 136 (17) (2024)
  24. Stamatopoulou P E Strong Light–Matter Interactions in Extreme Plasmonic and Mie-Resonant Systems Springer Theses Chapter 5 (2024) p. 95
  25. Cai H, Wang L-G Phys. Rev. A 110 (6) (2024)
  26. Poklonskiy E V, Kuklin V M Problems of Atomic Science and Technology 84 (2024)
  27. Zhang X, Zhang T et al Photon. Res. 12 (1) 78 (2024)
  28. Kuklin V M, Poklonskiy E V East Eur. J. Phys. (2) 124 (2023)
  29. Cai H, Wang L-G Phys. Rev. A 108 (4) (2023)
  30. Galletti M, Cianchi A et al New J. Phys. 25 (6) 063014 (2023)
  31. Antonyuk G I, Benghin V V et al Solar-Terrestrial Relations and Physics of Earthquake Precursors Springer Proceedings in Earth and Environmental Sciences Chapter 17 (2023) p. 159
  32. Philippe G, Moalic M, Kłos Ja W Journal of Magnetism and Magnetic Materials 587 171359 (2023)
  33. Mahmoud M, Turky A A et al Physics of Plasmas 30 (2) (2023)
  34. Shen D, Zhao G et al Chin. Opt. Lett. 21 (4) 041901 (2023)
  35. Štumpf Martin, Gu Ju, Lager I E IEEE Trans. Antennas Propagat. 71 (4) 3382 (2023)
  36. Roques-Carmes Ch, Kooi S E et al Applied Physics Reviews 10 (1) (2023)
  37. Jirka M, Sasorov P, Bulanov S V Phys. Rev. A 107 (5) (2023)
  38. Zhang P, Shu J et al Advanced Photonics Research 3 (10) (2022)
  39. Tian Z, Wu L et al Phys. Rev. D 106 (6) (2022)
  40. Shiloh R, Schönenberger N et al Adv. Opt. Photon. 14 (4) 862 (2022)
  41. Zhang T, Zhang X et al Photon. Res. 10 (7) 1650 (2022)
  42. Wang L, Paul N K, Gomez-Diaz J S 2022 IEEE International Symposium on Antennas and Propagation and USNC-URSI Radio Science Meeting (AP-S/URSI), (2022) p. 904
  43. (13TH INTERNATIONAL SCIENTIFIC CONFERENCE ON AERONAUTICS, AUTOMOTIVE AND RAILWAY ENGINEERING AND TECHNOLOGIES (BulTrans-2021)) Vol. 13TH INTERNATIONAL SCIENTIFIC CONFERENCE ON AERONAUTICS, AUTOMOTIVE AND RAILWAY ENGINEERING AND TECHNOLOGIES (BulTrans-2021)Effect of waves an elastic guide on the dynamics of a rocket trainVladimir I.ErofeevSergey I.GerasimovElena E.LisenkovaStanislavVerichev2557 (2022) p. 050043
  44. Maltseva Yu I, Ivanenko S V et al J. Inst. 17 (05) T05004 (2022)
  45. Lang S, Sauerbrey R et al Phys. Rev. Research 4 (3) (2022)
  46. Labarbe J, Kirillov O N Physics of Fluids 34 (1) (2022)
  47. Gevorkyan E A 2021 Radiation and Scattering of Electromagnetic Waves (RSEMW), (2021) p. 83
  48. Pan Y, Gover A New J. Phys. 23 (6) 063070 (2021)
  49. Zheltikov A M Phys. Rev. A 104 (4) (2021)
  50. Petrov N I Sci Rep 11 (1) (2021)
  51. Sytova S N Journal of the Belarusian State University. Physics (1) 62 (2021)
  52. Tkachenko V I, Tkachenko I V et al Problems of Atomic Science and Technology 36 (2020)
  53. Maciel-Escudero C, Konečná A et al Phys. Rev. B 102 (11) (2020)
  54. Karnieli A, Rivera N et al Conference on Lasers and Electro-Optics, (2020) p. FTu3D.5
  55. Rivera N, Kaminer I Nat Rev Phys 2 (10) 538 (2020)
  56. L’Annunziata Michael F, Grahek Ž, Todorović Nataša Handbook of Radioactivity Analysis: Volume 2 (2020) p. 393
  57. Marino Ja, Menezes G, Carusotto I Phys. Rev. Research 2 (4) (2020)
  58. Alicki R, Jenkins A Phys. Rev. Lett. 125 (18) (2020)
  59. Labarbe J, Kirillov O N J. Fluid Mech. 901 (2020)
  60. Yeghikyan A ComBAO 37 (2020)
  61. Schmidt F, Mayer D et al Physica Status Solidi (b) 256 (9) (2019)
  62. Volokitin A I Jetp Lett. 110 (6) 397 (2019)
  63. Pan Y, Gover A Phys. Rev. A 99 (5) (2019)
  64. Skagerstam B-S K, Eriksson K-E, Rekdal P K J. Phys. Commun. 3 (8) 082001 (2019)
  65. Bolotovskii B M, Malykin G B Phys.-Usp. 62 (10) 1012 (2019)
  66. The Vlasov Equation 1 1 (2019) p. 147
  67. Lin X, Zhang B Laser & Photonics Reviews 13 (12) (2019)
  68. Intravaia F, Oelschläger M et al Phys. Rev. Lett. 123 (12) (2019)
  69. Skagerstam B-S K, Eriksson K-E, Rekdal P K Class. Quantum Grav. 36 (1) 015011 (2019)
  70. Shi X, Lin X et al Nature Phys 14 (10) 1001 (2018)
  71. Henstridge M, Pfeiffer C et al Science 362 (6413) 439 (2018)
  72. Hu M, Zhong R et al IEEE Trans. Electron Devices 65 (3) 1151 (2018)
  73. Gevorkyan E A Opt. Spectrosc. 125 (2) 227 (2018)
  74. Tsarev M V, Baum P New J. Phys. 20 (3) 033002 (2018)
  75. Curcio A, Anania M et al Phys. Rev. Applied 9 (2) (2018)
  76. Kieffer R, Bartnik L et al Phys. Rev. Lett. 121 (5) (2018)
  77. Gevorkyan E A 2018 IEEE 17th International Conference on Mathematical Methods in Electromagnetic Theory (MMET), (2018) p. 271
  78. Lausch T, Widera A, Fleischhauer M Phys. Rev. A 97 (2) (2018)
  79. Marino Ja, Recati A, Carusotto I Phys. Rev. Lett. 118 (4) (2017)
  80. Toptygin I N Успехи физических наук 187 (09) 1007 (2017) [Toptygin I N Phys.-Usp. 60 (9) 935 (2017)]
  81. Talebi N J. Opt. 19 (10) 103001 (2017)
  82. Pendharker S, Guo Yu et al Phys. Rev. A 95 (3) (2017)
  83. Dedkov G V, Kyasov A A Успехи физических наук 187 (06) 599 (2017) [Dedkov G V, Kyasov A A Phys.-Usp. 60 (6) 559 (2017)]
  84. Volokitin A I, Persson B N Y Jetp Lett. 103 (4) 228 (2016)
  85. Intravaia F, Behunin R O et al Phys. Rev. A 94 (4) (2016)
  86. Volokitin A I, Persson B N Y Jetp Lett. 103 (4) 223 (2016)
  87. Volokitin A I, Persson B N J Phys. Rev. B 93 (3) (2016)
  88. García de Abajo F J, Barwick B, Carbone F Phys. Rev. B 94 (4) (2016)
  89. Pollock Ju G, Iyer A K et al Journal of Applied Physics 119 (8) (2016)
  90. Chefranov S G J. Exp. Theor. Phys. 123 (1) 12 (2016)
  91. Talebi N New J. Phys. 18 (12) 123006 (2016)
  92. Kaminer I, Mutzafi M et al Phys. Rev. X 6 (1) (2016)
  93. Milton K, Høye J, Brevik I Symmetry 8 (5) 29 (2016)
  94. Zhao X, Huang P, Hu X Sci Rep 6 (1) (2016)
  95. Brenny B J M, Polman A, García de Abajo F Javier Phys. Rev. B 94 (15) (2016)
  96. Hertel R J. Phys.: Condens. Matter 28 (48) 483002 (2016)
  97. Tomaschitz R Journal of High Energy Astrophysics 8 10 (2015)
  98. Díaz J  S, Klinkhamer F  R Phys. Rev. D 92 (2) (2015)
  99. Intravaia F, Mkrtchian V E et al J. Phys.: Condens. Matter 27 (21) 214020 (2015)
  100. Arvanitaki A, Baryakhtar M, Huang X Phys. Rev. D 91 (8) (2015)
  101. van Dalen K N, Tsouvalas A et al International Journal of Solids and Structures 73-74 99 (2015)
  102. Hertel R, Andreas C Magnetic Nano- and Microwires (2015) p. 653
  103. Bilous P V, Yatsenko L P Ukr. J. Phys. 60 (04) 371 (2015)
  104. Pieplow G, Henkel C J. Phys.: Condens. Matter 27 (21) 214001 (2015)
  105. Silveirinha M G Phys. Rev. X 4 (3) (2014)
  106. Tomaschitz R Physics Letters A 378 (32-33) 2337 (2014)
  107. Tomaschitz R Physics Letters A 378 (40) 2915 (2014)
  108. Mkrtchian V E, Henkel C Annalen der Physik 526 (1-2) 87 (2014)
  109. Liu Sh, Hu M et al 2013 38th International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz), (2013) p. 1
  110. Maghrebi M F, Golestanian R, Kardar M Phys. Rev. A 88 (4) (2013)
  111. Burlak G, Martinez-Sanchez E MRS Proc. 1617 181 (2013)
  112. Yan M, Kákay A et al Phys. Rev. B 88 (22) (2013)
  113. Zhang Ya, Hu M et al 2013 6th UK, Europe, China Millimeter Waves and THz Technology Workshop (UCMMT), (2013) p. 1
  114. Le Thomas N, Alexander D T L et al Phys. Rev. B 87 (15) (2013)
  115. Zhang Ya X, Liang D et al 2012 37th International Conference on Infrared, Millimeter, and Terahertz Waves, (2012) p. 1
  116. Dalla P F, Belgiorno F et al Phys. Rev. A 85 (3) (2012)
  117. Zhang P, Zhang Ya et al J. Phys. D: Appl. Phys. 45 (14) 145303 (2012)
  118. Yanai A, Levy U Opt. Express 20 (16) 18515 (2012)
  119. Liu Sh, Zhang P et al Phys. Rev. Lett. 109 (15) (2012)
  120. Chaudhuri M, Ivlev A V et al Soft Matter 7 (4) 1287 (2011)
  121. Liu Sh, Hu M et al Phys. Rev. E 83 (6) (2011)
  122. Kheirandish F, Amooghorban E Phys. Rev. A 82 (4) (2010)
  123. Kanareykin A J. Phys.: Conf. Ser. 236 012032 (2010)
  124. García de Abajo F J Rev. Mod. Phys. 82 (1) 209 (2010)
  125. On Superconductivity and Superfluidity Chapter 6 (2009) p. 175
  126. Pavlov V, Tito E P The Journal of the Acoustical Society of America 125 (2) 676 (2009)
  127. Morfill G E, Ivlev A V Rev. Mod. Phys. 81 (4) 1353 (2009)
  128. Storm M, Begishev I A et al Review of Scientific Instruments 79 (10) (2008)
  129. Stoeckl C, Anderson K S et al Plasma Phys. Control. Fusion 50 (12) 124044 (2008)
  130. Gabrielli A, Gandolfi E, Ricci P P Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 556 (1) 302 (2006)
  131. Vavilov-Cherenkov and Synchrotron Radiation Chapter 4 (2005) p. 127
  132. Zabala N, García de Abajo F J et al Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 230 (1-4) 24 (2005)
  133. Kopeikin S M Class. Quantum Grav. 21 (13) 3251 (2004)
  134. Fortov V E, Khrapak A G et al Uspekhi Fizicheskikh Nauk 174 (5) 495 (2004)
  135. Chefranov S G Phys. Rev. Lett. 93 (25) (2004)
  136. Chefranov S G J. Exp. Theor. Phys. 99 (2) 296 (2004)
  137. Zabala N, Pattantyus-Abraham A G et al Phys. Rev. B 68 (24) (2003)
  138. Zabala N, Rivacoba A et al Surface Science 532-535 461 (2003)
  139. Mukhin K N, Sustavov A F, Tikhonov V N Uspekhi Fizicheskikh Nauk 173 (5) 511 (2003)
  140. Ginzburg V L Uspekhi Fizicheskikh Nauk 172 (3) 373 (2002)
  141. Krafft C, Starodubtsev M Planetary and Space Science 50 (2) 129 (2002)
  142. Compagno G, Persico F J. Phys. A: Math. Gen. 35 (16) 3629 (2002)
  143. Ginzburg V L The Physics of a Lifetime Chapter 11 (2001) p. 309
  144. Ginzburg V L The Physics of a Lifetime Chapter 1 (2001) p. 3
  145. Ter-Mikhaelyan M L Uspekhi Fizicheskikh Nauk 171 (6) 597 (2001)
  146. Griv E, Gedalin M et al Astrophysics and Space Science 271 (1) 21 (2000)
  147. Kartavenko V G, Afanasiev G N, Greiner W Physica B: Condensed Matter 271 (1-4) 192 (1999)
  148. Starodubtsev M, Krafft C Physics of Plasmas 6 (6) 2598 (1999)
  149. Ginzburg V L Uspekhi Fizicheskikh Nauk 169 (4) 419 (1999)
  150. Starodubtsev M, Krafft C et al Physics of Plasmas 6 (7) 2862 (1999)
  151. Starodubtsev M, Krafft C et al Physics of Plasmas 6 (5) 1427 (1999)
  152. Afanasiev G N, Eliseev S M, Stepanovsky Yu P Phys. Scr. 60 (6) 535 (1999)
  153. Afanasiev G N, Kartavenko V G, Magar E N Physica B: Condensed Matter 269 (1) 95 (1999)
  154. Afanasiev G N, Kartavenko V G J. Phys. D: Appl. Phys. 31 (20) 2760 (1998)

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