Issues

 / 

1972

 / 

June

  

Reviews of topical problems


Radiative polarization of electrons in storage rings

Polarization of electrons arising as the result of radiation during extended motion in a magnetic field is considered. A calculation is made with the quasiclassical operator method of the probability of a radiative transition in a magnetic field with spin flip, including the case of a nonuniform magnetic field. The kinetic equation is obtained for polarization of electrons in an external field with inclusion of radiation effects, and this is used to analyze the kinetics of radiative polarization. Effects are discussed which lead to depolarization of an electron beam in motion in a nonuniform magnetic field, and means of suppressing these effects and also of intentional depolarization of a beam are pointed out. Means are discussed for measurement of the transverse polarization of high energy electrons, and a description is given of an experiment in which the first indication of the existence of the radiative polarization effect has been obtained.

Fulltext pdf (1.9 MB)
Fulltext is also available at DOI: 10.1070/PU1972v014n06ABEH004751
PACS: 29.20.Dh, 41.75.Fr, 29.27.Hj, 29.27.Bd (all)
DOI: 10.1070/PU1972v014n06ABEH004751
URL: https://ufn.ru/en/articles/1972/6/b/
Citation: Baier V N "Radiative polarization of electrons in storage rings" Sov. Phys. Usp. 14 695–714 (1972)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Байер В Н «Радиационная поляризация электронов в накопителях» УФН 105 441–478 (1971); DOI: 10.3367/UFNr.0105.197111c.0441

Cited by (113) ↓ Similar articles (20)

  1. Wu X-Zh, Li Ya-F et al Commun Phys 8 (1) (2025)
  2. Chen Sh, Huang Y et al Eur. Phys. J. Plus 140 (1) (2025)
  3. Bai J, Chen Zh et al Phys. Rev. A 111 (5) (2025)
  4. Gao Zh, Wang W-M EPL 152 (4) 44002 (2025)
  5. Vacalis G, Higuchi A et al Phys. Rev. Lett. 135 (19) (2025)
  6. Dai D, Shen X, Qiao B Phys. Rev. A 112 (3) (2025)
  7. Bake M A, Bai J Plasma Phys. Control. Fusion 67 (11) 115020 (2025)
  8. Zhu X-L, Liu W-Yu et al Phys. Rev. Lett. 132 (23) (2024)
  9. Zhu X-L, Chen M et al Phys. Rev. Research 6 (4) (2024)
  10. Torgrimsson G Phys. Rev. D 110 (7) (2024)
  11. Shen X, Gong Zh et al Phys. Rev. Research 6 (3) (2024)
  12. Torgrimsson G Phys. Rev. D 109 (7) (2024)
  13. Seipt D, Thomas A G R Physics of Plasmas 30 (9) (2023)
  14. Ma Q, Tang Yu et al Phys. Rev. Applied 19 (1) (2023)
  15. Li Ya-F, Chen Yu-Yu et al Phys. Rev. D 107 (11) (2023)
  16. Dai Ya-N, Jiang J-J et al Phys. Rev. D 108 (5) (2023)
  17. Artemenko I I, Kostyukov I Yu Phys. Rev. A 108 (5) (2023)
  18. Gong Zh, Hatsagortsyan K Z, Keitel Ch H Phys. Rev. Lett. 130 (1) (2023)
  19. Wan F, Lv Ch et al Matter and Radiation at Extremes 8 (6) (2023)
  20. Zhuang K-H, Chen Yu-Yu et al Phys. Rev. D 108 (3) (2023)
  21. Fedotov A, Ilderton A et al Physics Reports 1010 1 (2023)
  22. Li Ya-F, Chen Yu-Yu et al Phys. Rev. Lett. 128 (17) (2022)
  23. Blinov V E, Levichev E B et al Eur. Phys. J. Plus 137 (6) (2022)
  24. Han Q, Geng X et al New J. Phys. 24 (6) 063013 (2022)
  25. Song H-H, Wang W-M, Li Yu-T Phys. Rev. Lett. 129 (3) (2022)
  26. Chen S H, Huang Y S et al J. Inst. 17 (08) P08005 (2022)
  27. Dai Ya-N, Shen B-F et al Matter and Radiation at Extremes 7 (1) (2022)
  28. Liu W-Yu, Xue K et al Phys. Rev. Research 4 (2) (2022)
  29. Lebedev S L Int. J. Mod. Phys. A 37 (15) (2022)
  30. Baryshevsky V G, Porshnev P I Phys. Scr. 97 (3) 035302 (2022)
  31. Pugacheva D V, Andreev N E Quantum Electron. 51 (9) 826 (2021)
  32. Torgrimsson G Phys. Rev. D 104 (5) (2021)
  33. Sun T, Wang Yu et al Acta Phys. Sin. 70 (8) 087901 (2021)
  34. Shiltsev V, Zimmermann F Rev. Mod. Phys. 93 (1) (2021)
  35. Torgrimsson G New J. Phys. 23 (6) 065001 (2021)
  36. Gong Zh, Hatsagortsyan K Z, Keitel Ch H Phys. Rev. Lett. 127 (16) (2021)
  37. Song H-H, Wang W-M et al New J. Phys. 23 (7) 075005 (2021)
  38. Song H-H, Wang W-M, Li Yu-T Phys. Rev. Research 3 (3) (2021)
  39. Tang Yu, Gong Zh et al Phys. Rev. A 103 (4) (2021)
  40. Seipt D, King B Phys. Rev. A 102 (5) (2020)
  41. Li Ya-F, Chen Yu-Yu et al Phys. Rev. Lett. 125 (4) (2020)
  42. Büscher M, Hützen A et al High Pow Laser Sci Eng 8 (2020)
  43. Wan F, Shaisultanov R et al Physics Letters B 800 135120 (2020)
  44. Ilderton A, King B, Tang S Phys. Rev. D 102 (7) (2020)
  45. Guo R-T, Wang Yu et al Phys. Rev. Research 2 (3) (2020)
  46. Li Ya-F, Guo R-T et al Phys. Rev. Applied 12 (1) (2019)
  47. Wistisen T  N, Di Piazza A Phys. Rev. D 100 (11) (2019)
  48. An X Y, Chen M et al Physics of Plasmas 26 (12) (2019)
  49. Chen Yu-Yu, He P-L et al Phys. Rev. Lett. 123 (17) (2019)
  50. Song H-H, Wang W-M et al Phys. Rev. A 100 (3) (2019)
  51. Li Ya-F, Shaisultanov R et al Phys. Rev. Lett. 122 (15) (2019)
  52. Levichev E B, Skrinsky A N et al Phys.-Usp. 61 (5) 405 (2018)
  53. Achasov M N, Zhang J-Ya, Muchnoi N Yu Nuclear And Particle Physics Proceedings 287-288 19 (2017)
  54. Lebedev S L J. Exp. Theor. Phys. 122 (4) 650 (2016)
  55. Abakumova E V, Achasov M N et al Nuclear Instruments And Methods In Physics Research Section A: Accelerators, Spectrometers, Detectors And Associated Equipment 744 35 (2014)
  56. Lebedev S L Int. J. Mod. Phys. A 29 (31) 1450186 (2014)
  57. Uggerhøj U I Exciting Interdisciplinary Physics Chapter 33 (2013) p. 411
  58. Wootton K P, Boland M J et al Phys. Rev. ST Accel. Beams 16 (7) (2013)
  59. Bondarevskaya A, Prozorov A et al Physics Reports 507 (1) 1 (2011)
  60. Potylitsyn A P J. Phys. G: Nucl. Part. Phys. 37 (11) 115106 (2010)
  61. Pardy M Int J Theor Phys 48 (11) 3241 (2009)
  62. Baier V N, Katkov V M J. Phys.: Conf. Ser. 198 012003 (2009)
  63. Malykin G B Uspekhi Fizicheskikh Nauk 176 (8) 865 (2006)
  64. Mane S R, Shatunov Yu M, Yokoya K Rep. Prog. Phys. 68 (9) 1997 (2005)
  65. Prozorov A, Labzowsky L et al Physics Letters B 574 (3-4) 180 (2003)
  66. Skrinsky A N Nuclear Instruments And Methods In Physics Research Section A: Accelerators, Spectrometers, Detectors And Associated Equipment 494 (1-3) 1 (2002)
  67. Leinaas J M Quantum [Un]speakables Chapter 28 (2002) p. 401
  68. Matsas G, Vanzella D Phys. Rev. D 59 (9) (1999)
  69. Guimarães A C C, Matsas G E A, Vanzella D A T Phys. Rev. D 57 (7) 4461 (1998)
  70. Vol. Proceedings Particle Accelerator ConferenceAccelerator field development at Novosibirsk (history, status, prospects)A.Skrinsky1 (1995) p. 14
  71. Baier V N, Katkov V M, Strakhovenko V M Z. Phys. C - Particles And Fields 60 (4) 671 (1993)
  72. Kisel’ V V Soviet Physics Journal 34 (9) 786 (1991)
  73. Kisel’ V V Soviet Physics Journal 34 (2) 99 (1991)
  74. Arutyunov V A, Kudryashov N A et al Physics Letters A 152 (1-2) 122 (1991)
  75. Arutyunov V A, Kudryashov N A et al Nuclear Instruments And Methods In Physics Research Section B: Beam Interactions With Materials And Atoms 52 (1) 13 (1990)
  76. Ternov I M, Bordovitsyn V A, �pp V Ya Soviet Physics Journal 33 (6) 478 (1990)
  77. Ternov I M, Bordovitsyn V A Soviet Physics Journal 30 (4) 350 (1987)
  78. Hikasa Ken-ichi Phys. Rev. D 33 (11) 3203 (1986)
  79. Blinov A E, Bondar A E et al Nuclear Instruments And Methods In Physics Research Section A: Accelerators, Spectrometers, Detectors And Associated Equipment 241 (1) 80 (1985)
  80. Wu S L Physics Reports 107 (2-5) 59 (1984)
  81. Jonker M, Udo F et al Z. Phys. C - Particles And Fields 17 (3) 211 (1983)
  82. Söding P Techniques and Concepts of High-Energy Physics II Chapter 4 (1983) p. 97
  83. Chao A W IEEE Trans. Nucl. Sci. 30 (4) 2383 (1983)
  84. Prescott Ch Y The High-Energy Limit Chapter 14 (1983) p. 415
  85. Hanson G, Alam M S et al Phys. Rev. D 26 (5) 991 (1982)
  86. Neumann R, Rossmanith R Nuclear Instruments And Methods In Physics Research 204 (1) 29 (1982)
  87. Coteus P, Holmes S D Nuclear Instruments And Methods In Physics Research 204 (1) 21 (1982)
  88. Wu S L Phys. Scr. 25 (1B) 212 (1982)
  89. Montague B W Nuclear Instruments And Methods In Physics Research 192 (2-3) 165 (1982)
  90. Sivers D High-Energy Physics with Polarized Beams and Polarized Targets Chapter 8 (1981) p. 82
  91. Chao A W Nuclear Instruments And Methods 180 (1) 29 (1981)
  92. Bashmakov Yu A Radiation Effects 56 (1-2) 55 (1981)
  93. Chao A W High-Energy Physics with Polarized Beams and Polarized Targets Chapter 2 (1981) p. 15
  94. fung P C W, Fung W Y P Astrophys Space Sci 75 (2) 365 (1981)
  95. Augustin J E Quarks and Leptons Chapter 5 (1980) p. 155
  96. Bagrov V G, Bordovitsyn V A Soviet Physics Journal 23 (2) 128 (1980)
  97. Combley F H Rep. Prog. Phys. 42 (12) 1889 (1979)
  98. Ternov I M, Khalilov V R, Pavlova O S Soviet Physics Journal 22 (2) 140 (1979)
  99. Chao A W IEEE Trans. Nucl. Sci. 26 (3) 3482 (1979)
  100. Gustavson D B, Murray J J et al Nuclear Instruments And Methods 165 (2) 177 (1979)
  101. Fung P C W, Fung W Y P Astrophys Space Sci 66 (1) 235 (1979)
  102. Serednyakov S I, Sidorov V A et al Physics Letters B 66 (1) 102 (1977)
  103. Sokolov A A, Ternov I M, Mikhailin V V Soviet Physics Journal 19 (4) 403 (1976)
  104. Möhl D, Montague B W Nuclear Instruments And Methods 137 (3) 423 (1976)
  105. Sokolov A A, Zhukovskii V Ch et al Soviet Physics Journal 19 (11) 1447 (1976)
  106. Ndili F N, Okeke P N, Chukumah G C Int J Theor Phys 15 (1) 1 (1976)
  107. Jackson J D Rev. Mod. Phys. 48 (3) 417 (1976)
  108. Tsai Yu S Phys. Rev. D 12 (11) 3533 (1975)
  109. Learned J G, Resvanis L K, Spencer C M Phys. Rev. Lett. 35 (25) 1688 (1975)
  110. Schwinger Ju, Tsai Wu-yang Phys. Rev. D 9 (6) 1843 (1974)
  111. Sokolov A A, Borisov A V et al Soviet Physics Journal 17 (12) 1635 (1974)
  112. Avram N M, Schiller D H Nuclear Physics B 70 (2) 272 (1974)
  113. Schwitters R F Nuclear Instruments And Methods 117 (2) 331 (1974)

© 1918–2025 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions