Issues

 / 

1991

 / 

March

  

Methodological notes


Average radiation-reaction force in quantum electrodynamics

Standard invariant perturbative methods are used to derive an expression for the radiationreaction force acting on a charged particle in quantum electrodynamics. When the average change in the particle's momentum is found by taking an average over the states closest to the classical state, the result is an expression whose classical limit is the same as the classical expression for the radiation-reaction force.

Fulltext pdf (576 KB)
Fulltext is also available at DOI: 10.1070/PU1991v034n03ABEH002352
PACS: 12.20.Ds
DOI: 10.1070/PU1991v034n03ABEH002352
URL: https://ufn.ru/en/articles/1991/3/d/
Citation: Krivitskii V S, Tsytovich V N "Average radiation-reaction force in quantum electrodynamics" Sov. Phys. Usp. 34 (3) 250–258 (1991)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Кривицкий В С, Цытович В Н «О средней силе радиационного трения в квантовой электродинамике» УФН 161 (3) 125–141 (1991); DOI: 10.3367/UFNr.0161.199103f.0125

References (8) Cited by (62) ↓ Similar articles (20)

  1. Inés J-A J, Ares de Parga Gonzalo et al Plasma Science - Current Developments, Applications, and Future Directions [Working Title] (2025)
  2. Artemenko I I, Kostyukov I Yu Phys. Rev. A 112 (2) (2025)
  3. Cristofoli A, Elkhidir A et al J. High Energ. Phys. 2023 (6) (2023)
  4. Fedotov A, Ilderton A et al Physics Reports 1010 1 (2023)
  5. Ilderton A, Lindved W J. High Energ. Phys. 2023 (12) (2023)
  6. Gonzo R, Ilderton A J. High Energ. Phys. 2023 (10) (2023)
  7. Ares de Parga G, Sánchez-Salas N, Jiménez-Aquino J I Physica A: Statistical Mechanics And Its Applications 600 127556 (2022)
  8. Hosak A, Di Piazza A Eur. Phys. J. D 76 (10) (2022)
  9. Gonoskov A, Blackburn T  G et al Rev. Mod. Phys. 94 (4) (2022)
  10. Ares de Parga G, Domínguez-Hernández S et al J. Phys.: Conf. Ser. 1956 (1) 012023 (2021)
  11. Khusnutdinov N Eur. Phys. J. Plus 136 (6) (2021)
  12. Ekman R, Heinzl T, Ilderton A Phys. Rev. D 104 (3) (2021)
  13. Niel F Classical and Quantum Description of Plasma and Radiation in Strong Fields Springer Theses Chapter 5 (2021) p. 99
  14. Carati A, Stroppi M Phys. Scr. 96 (5) 055216 (2021)
  15. Torgrimsson G Phys. Rev. Lett. 127 (11) (2021)
  16. Heinzl T, Ilderton A, King B Phys. Rev. Lett. 127 (6) (2021)
  17. Ekman R, Heinzl T, Ilderton A New J. Phys. 23 (5) 055001 (2021)
  18. Blackburn T G Rev. Mod. Plasma Phys. 4 (1) (2020)
  19. Adamo T, Ilderton A J. High Energ. Phys. 2020 (9) (2020)
  20. Kaufman A R, Latimer D C Phys. Scr. 95 (3) 035302 (2020)
  21. Khusnutdinov N Int. J. Mod. Phys. A 35 (02n03) 2040016 (2020)
  22. Polonyi Ja Int. J. Mod. Phys. A 34 (15) 1950077 (2019)
  23. Popruzhenko S V, Liseykina T V, Macchi A New J. Phys. 21 (3) 033009 (2019)
  24. Shi Yu Annals Of Physics 405 130 (2019)
  25. Bogdanov O  V, Kazinski P  O, Lazarenko G  Yu Phys. Rev. D 99 (11) (2019)
  26. Niel F, Riconda C et al Phys. Rev. E 97 (4) (2018)
  27. Cole J  M, Behm K  T et al Phys. Rev. X 8 (1) (2018)
  28. Poder K, Tamburini M et al Phys. Rev. X 8 (3) (2018)
  29. Li X B, Qiao B et al Phys. Rev. A 98 (5) (2018)
  30. Harvey C  N Phys. Rev. Accel. Beams 21 (11) (2018)
  31. Duff M J, Capdessus R et al Plasma Phys. Control. Fusion 60 (6) 064006 (2018)
  32. Di Piazza A, Wistisen T N, Uggerhøj U I Physics Letters B 765 1 (2017)
  33. Ridgers C P, Blackburn T G et al J. Plasma Phys. 83 (5) (2017)
  34. Dinu V, Harvey Ch et al Phys. Rev. Lett. 116 (4) (2016)
  35. Capdessus R, Noble A et al Phys. Rev. D 93 (4) (2016)
  36. Vranic M, Grismayer T et al New J. Phys. 18 (7) 073035 (2016)
  37. Harvey Ch, Marklund M, Holkundkar A R Phys. Rev. Accel. Beams 19 (9) (2016)
  38. Green D G, Harvey C N Computer Physics Communications 192 313 (2015)
  39. Holkundkar A R, Harvey Ch, Marklund M Physics of Plasmas 22 (10) (2015)
  40. Gonoskov A, Bastrakov S et al Phys. Rev. E 92 (2) (2015)
  41. Bogdanov O V, Kazinski P O Jetp Lett. 101 (3) 206 (2015)
  42. Green D  G, Harvey C  N Phys. Rev. Lett. 112 (16) (2014)
  43. Holkundkar A R, Harvey Ch Physics of Plasmas 21 (10) (2014)
  44. Ilderton A Few-Body Syst 55 (5-7) 493 (2014)
  45. Torgrimsson G Few-Body Syst 55 (5-7) 501 (2014)
  46. Constantinou Y, Spirin P J. High Energ. Phys. 2014 (1) (2014)
  47. Ilderton A, Torgrimsson G Physics Letters B 725 (4-5) 481 (2013)
  48. Ilderton A, Torgrimsson G Phys. Rev. D 88 (2) (2013)
  49. Alcaine G G, Llanes-Estrada F J Phys. Rev. E 88 (3) (2013)
  50. Di Piazza A, Müller C et al Rev. Mod. Phys. 84 (3) 1177 (2012)
  51. Kazinski P O, Shipulya M A Phys. Rev. E 83 (6) (2011)
  52. Higuchi A, Walker P J Phys. Rev. D 79 (10) (2009)
  53. Higuchi A, Walker P J Phys. Rev. D 80 (10) (2009)
  54. Crispino L C B, Higuchi A, Matsas G E A Rev. Mod. Phys. 80 (3) 787 (2008)
  55. Higuchi A, Martin G D R Phys. Rev. D 73 (2) (2006)
  56. Higuchi A, Martin G D R Phys. Rev. D 74 (12) (2006)
  57. Bordovitsyn V A, Pozdeeva T O Russ Phys J 49 (6) 648 (2006)
  58. Johnson P R, Hu B L Found Phys 35 (7) 1117 (2005)
  59. Higuchi A, Martin G D R Found Phys 35 (7) 1149 (2005)
  60. Khusnutdinov N R Uspekhi Fizicheskikh Nauk 175 (6) 603 (2005)
  61. Johnson P R, Hu B L Phys. Rev. D 65 (6) (2002)
  62. Thielheim K O Phys. Scr. T52 123 (1994)

© 1918–2026 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions