Issues

 / 

2009

 / 

June

  

Oral issue of the journal “Uspekhi Fizicheskikh Nauk”


Modern radio-optical methods in quantum magnetometry

,
Ioffe Institute, ul. Polytekhnicheskaya 26, St. Petersburg, 194021, Russian Federation

This paper is an extension of a part of the talk delivered under the more general title “Narrow spectral lines in fundamental metrology: state of the art, prospects, and problems” at the session of the 90th anniversary of Physics-Uspekhi. The talk reviewed past developments and the current status of the metrology of length, frequency/time, and magnetic fields. The measurement of these quantities currently relies on the high stability of energies of standard transitions between metastable atomic states. Because of space restrictions in the journal, all metrology topics other than the title one were omitted in the present review.

Fulltext pdf (1.5 MB)
video avi (100 MB)
Fulltext is also available at DOI: 10.3367/UFNe.0179.200906f.0605
PACS: 06.20.−f, 07.55.Ge, 76.70.−r (all)
DOI: 10.3367/UFNe.0179.200906f.0605
URL: https://ufn.ru/en/articles/2009/6/f/
000271221900006
2-s2.0-70449433159
2009PhyU...52..573A
Citation: Aleksandrov E B, Vershovskii A K "Modern radio-optical methods in quantum magnetometry" Phys. Usp. 52 573–601 (2009)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Александров Е Б, Вершовский А К «Современные радиооптические методы квантовой магнитометрии» УФН 179 605–637 (2009); DOI: 10.3367/UFNr.0179.200906f.0605

References (184) Cited by (107) ↓ Similar articles (2)

  1. Rostami Kh R Tech. Phys. 69 663 (2024)
  2. Gonzalez M M, Rollins O et al Opt. Express 32 25062 (2024)
  3. Popov E N, Gaidash A A et al Phys. Scr. 99 105505 (2024)
  4. McKelvy J A, Maldonado M A et al Appl. Opt. 62 6518 (2023)
  5. Fabricant A, Novikova I, Bison G New J. Phys. 25 025001 (2023)
  6. Brazhnikov D V, Entin V M, Ryabtsev I I J. Exp. Theor. Phys. 137 254 (2023)
  7. Ermak S, Kryachko A et al 2023 Wave Electronics and its Application in Information and Telecommunication Systems (WECONF), (2023) p. 1
  8. Ding Yu, Xiao W et al Phys. Rev. Applied 19 (3) (2023)
  9. Makarov A O, Brazhnikov D V, Goncharov A N Pisʹma V žurnal êksperimentalʹnoj I Teoretičeskoj Fiziki 117 509 (2023)
  10. Brazhnikov D V, Entin V M, Ryabtsev I I Žurnal èksperimentalʹnoj I Teoretičeskoj Fiziki 164 291 (2023)
  11. Lu Yu-T, Liu L-S et al Applied Sciences 13 8225 (2023)
  12. Kartoshkin V A Opt. Spectrosc. 131 103 (2023)
  13. Sergeeva M, Rogatin M et al 2023 International Conference on Electrical Engineering and Photonics (EExPolytech), (2023) p. 381
  14. Makarov A O, Brazhnikov D V, Goncharov A N Jetp Lett. 117 509 (2023)
  15. Oelsner G, IJsselsteijn R et al Phys. Rev. Applied 17 (2) (2022)
  16. Chalkov V V, Shevchenko A N IOP Conf. Ser.: Mater. Sci. Eng. 1215 012012 (2022)
  17. Lebedev V, Jaufenthaler A et al Flexible High Performance Magnetic Field Sensors Chapter 13 (2022) p. 247
  18. Voloshin G V, Meng H et al J. Exp. Theor. Phys. 135 269 (2022)
  19. Fofanov Ya A, Sokolov I M J. Exp. Theor. Phys. 135 255 (2022)
  20. Ding Yu, Zhang R et al 93 (1) (2022)
  21. Bezmen G V, Shevchenko A N J. Phys.: Conf. Ser. 1864 012010 (2021)
  22. Kartoshkin V A Tech. Phys. 66 1221 (2021)
  23. Kartoshkin V A Opt. Spectrosc. 129 641 (2021)
  24. Davydov V V, Dudkin V I et al Appl Magn Reson 52 1201 (2021)
  25. Logunov S E, Davydov V V, Rud V Yu J. Phys.: Conf. Ser. 2086 012089 (2021)
  26. Rostami Kh R, Nikitin I P, Luzanov V A J. Commun. Technol. Electron. 66 1201 (2021)
  27. Barantsev K A, Litvinov A N et al J. Exp. Theor. Phys. 132 189 (2021)
  28. Chalkov V V, Shevchenko A N J. Phys.: Conf. Ser. 1536 012013 (2020)
  29. Rostami Kh R, Nikitin I P Measurement 153 107423 (2020)
  30. Ermak S, Semenov V, Lozov R Journal Of Electronic Science And Technology 18 100028 (2020)
  31. Vershovskii A K, Dmitriev S P et al Tech. Phys. 65 1193 (2020)
  32. Shifrin V Ya, Belyakov D I et al Izmer. Tekhn. (4) 3 (2020)
  33. Jiang Z Y, Liu X C et al Opt. Lett. 45 105 (2020)
  34. Liu L, Lu Yu et al Applied Sciences 10 7172 (2020)
  35. Bezmen G V, Shevchenko A N et al Gyroscopy Navig. 11 115 (2020)
  36. Baranov A, Ermak S et al Universe 7 3 (2020)
  37. Shifrin V Ya, Belyakov D I et al Meas Tech 63 251 (2020)
  38. Kartoshkin V A J. Phys.: Conf. Ser. 1697 012146 (2020)
  39. Kartoshkin V A Opt. Spectrosc. 128 1355 (2020)
  40. Kartoshkin V A Opt. Spectrosc. 128 470 (2020)
  41. Logunov S E, Rud V Yu et al J. Phys.: Conf. Ser. 1326 012024 (2019)
  42. Gerginov V Phys. Rev. Applied 11 (2) (2019)
  43. Ding Zh, Yuan J, Long X Optics & Laser Technology 119 105573 (2019)
  44. Logunov S E, Davydov V V, Rud’ V Yu J. Phys.: Conf. Ser. 1400 066022 (2019)
  45. Anisimov A N, Babunts R A et al Tech. Phys. Lett. 45 494 (2019)
  46. Vershovskii A K, Dmitriev S P et al Tech. Phys. Lett. 45 1012 (2019)
  47. Logunov S E, Davydov V V et al J. Phys.: Conf. Ser. 1410 012113 (2019)
  48. Radnatarov D, Kobtsev S M et al Quantum and Nonlinear Optics VI, (2019) p. 33
  49. Tsygankov E A, Fomichev D E et al J. Phys.: Conf. Ser. 1238 012038 (2019)
  50. Kartoshkin V A Opt. Spectrosc. 127 691 (2019)
  51. Tsygankov E A, Zibrov S A et al Phys. Rev. A 99 (6) (2019)
  52. Logunov S E, Davydov R V et al J. Phys.: Conf. Ser. 1368 022056 (2019)
  53. Ding Zh, Yuan J, Long X EPL 122 40009 (2018)
  54. Vershovskii A K, Litmanovich Yu A et al Gyroscopy Navig. 9 162 (2018)
  55. Baranov A A, Ermak S V et al J. Phys.: Conf. Ser. 1038 012076 (2018)
  56. Popov E N, Bobrikova V A et al Jetp Lett. 108 513 (2018)
  57. Zibrov S A, Tsygankov E A et al Opt. Spectrosc. 124 143 (2018)
  58. Belyaev B A, Boev N M et al Russ Phys J 61 1367 (2018)
  59. Ding Zh, Yuan J, Long X Sensors 18 1401 (2018)
  60. Logunov S E, Vysoczky M G et al 2018 IEEE International Conference on Electrical Engineering and Photonics (EExPolytech), (2018) p. 282
  61. Ding Zh, Yuan J, Long X EPL 120 43001 (2017)
  62. Schultze V, Schillig B et al Sensors 17 561 (2017)
  63. Ding Zh, Yuan J et al Sci Rep 7 (1) (2017)
  64. Pan Zh, Shang J et al 2017 18th International Conference on Electronic Packaging Technology (ICEPT), (2017) p. 720
  65. Bevilacqua G, Biancalana V, Dancheva Y Phys. Rev. A 94 (1) (2016)
  66. Davydov V V, Dudkin V I, Velichko E N Meas Tech 59 176 (2016)
  67. Davydov V V, Dudkin V I Tech. Phys. 61 1115 (2016)
  68. Avdochenko B I, Karlova G F, Yurchenko V I 2016 13th International Scientific-Technical Conference on Actual Problems of Electronics Instrument Engineering (APEIE), (2016) p. 91
  69. Baranov A A, Ermak S V et al Tech. Phys. Lett. 42 186 (2016)
  70. Babitskii A N, Belyaev B A et al Instrum Exp Tech 59 425 (2016)
  71. Davydov V V, Dudkin V I et al Tech. Phys. Lett. 42 692 (2016)
  72. Lu J, Qian Zh et al Appl. Phys. B 122 (3) (2016)
  73. Davydov V V, Dudkin V I, Vologdin V A Int. J. Mod. Phys. Conf. Ser. 41 1660146 (2016)
  74. Sagitov E A, Ermak S V et al J. Phys.: Conf. Ser. 769 012044 (2016)
  75. Kozlov A N, Zibrov S A et al J. Exp. Theor. Phys. 122 823 (2016)
  76. Ermak S V, Sagitov E A et al Int. J. Mod. Phys. Conf. Ser. 41 1660140 (2016)
  77. Kopytenko Yu A, Ismagilov V S, Petrishchev M S Dokl. Earth Sc. 462 539 (2015)
  78. Davydov V V, Dudkin V I, Karseev A Yu Tech. Phys. Lett. 41 355 (2015)
  79. Babitskii A N, Belyaev B A et al Tech. Phys. Lett. 41 324 (2015)
  80. Ding Zh-Ch, Yuan J et al Chinese Phys. B 24 083202 (2015)
  81. Davydov V V, Dudkin V I, Karseev A Yu Instrum Exp Tech 58 787 (2015)
  82. Davydov V V, Dudkin V I, Karseev A Yu Tech. Phys. 60 456 (2015)
  83. Kartoshkin V A Opt. Spectrosc. 119 594 (2015)
  84. Davydov V V, Dudkin V I, Eliseev A I Tech. Phys. Lett. 41 469 (2015)
  85. Baranov A A, Ermak S V et al J. Exp. Theor. Phys. 121 393 (2015)
  86. Davydov V V, Dudkin V I et al Meas Tech 58 556 (2015)
  87. Vershovskii A K, Dmitriev A K Tech. Phys. Lett. 41 393 (2015)
  88. Davydov V V, Dudkin V I, Karseev A Yu Tech. Phys. Lett. 40 875 (2014)
  89. Scholtes T, Woetzel S et al Appl. Phys. B 117 211 (2014)
  90. Sevostianov D I, Yakovlev V P et al Bull. Lebedev Phys. Inst. 41 89 (2014)
  91. Davydov V V, Velichko E N et al Meas Tech 57 684 (2014)
  92. Dmitriev S P, Dovator N A et al Opt. Spectrosc. 116 216 (2014)
  93. Ermak S V, Zimnitskii P V et al Tech. Phys. Lett. 40 271 (2014)
  94. Vershovskii A K, Pazgalev A S, Alexandrov E B Laser Phys. 24 074017 (2014)
  95. Zhang Ju-H, Zeng X-J et al Chinese Phys. B 22 053202 (2013)
  96. Sevost’yanov D I, Yakovlev V P et al Quantum Electron. 43 638 (2013)
  97. Vershovskii A K, Dmitriev S P, Pazgalev A S Tech. Phys. 58 1481 (2013)
  98. Scholtes T, Schultze V et al Opt. Express 20 29217 (2012)
  99. Dmitriev S P, Dovator N A et al Opt. Spectrosc. 112 56 (2012)
  100. Schultze V, IJsselsteijn Rob et al Opt. Express 20 14201 (2012)
  101. Kartoshkin V A Opt. Spectrosc. 113 235 (2012)
  102. Mizutani N, Kobayashi T IEEE Trans. Magn. 48 4096 (2012)
  103. Scholtes T, Schultze V et al Phys. Rev. A 84 (4) (2011)
  104. Kartoshkin V A Opt. Spectrosc. 111 881 (2011)
  105. Vershovskii A K Tech. Phys. Lett. 37 140 (2011)
  106. Vershovskii A K, Pazgalev A S Tech. Phys. Lett. 37 23 (2011)
  107. Yudin V I, Taichenachev A V et al Phys. Rev. A 82 (3) (2010)

© 1918–2024 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions