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2025

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May

  

International year of quantum science and technology. Reviews of topical problems


Optical quantum memory in atomic ensembles: physical principles, experiments, and potential of application in a quantum repeater

  a,  a,  a,  a,  b, c,  d
a Kazan Quantum Center, Kazan National Research Technical University, K. Marx Str. 10, Kazan, 420111, Russian Federation
b Moscow Institute of Physics and Technology (National Research University), Institutskii per. 9, Dolgoprudny, Moscow Region, 141701, Russian Federation
c R&D Center JSC, Bolshoy Balkansky Lane 20, Moscow, 129090, Russian Federation
d Russian Academy of Sciences, China Branch of BRICS Institute of Future Networks, Shenzhen, China

We outline the physical principles of optical quantum memory in atomic ensembles, with the emphasis on protocols that have been successfully implemented experimentally. Among the protocols under consideration, prominence is given to the regularities of quantum memory on photon echo and slow light and to their implementations in crystals doped with rare-earth ions, which have a long quantum coherence lifetime on optical and spin transitions. We analyze the approaches and problems in achieving high efficiency and other practically significant parameters of quantum memory in real experimental conditions. Also discussed are ways to further improve optical quantum memory and the potential of its application in developing an optical quantum repeater.

Fulltext pdf (695 KB)
Fulltext is also available at DOI: 10.3367/UFNe.2024.06.039694
Keywords: optical quantum memory, two- and three-level atomic ensembles, optical and spin coherence, electromagnet„ically induced transparency, off-resonant Raman transitions, Autler—Townes splitting, photon echo, crystals with rare-earth ions, quantum repeaters
PACS: 03.67.−a, 42.40.Md, 42.50.Ex (all)
DOI: 10.3367/UFNe.2024.06.039694
URL: https://ufn.ru/en/articles/2025/5/a/
001524725300001
2-s2.0-105008976012
2025PhyU...68..431M
Citation: Moiseev S A, Minnegaliev M M, Gerasimov K I, Moiseev E S, Deev A D, Balega Yu Yu "Optical quantum memory in atomic ensembles: physical principles, experiments, and potential of application in a quantum repeater" Phys. Usp. 68 431–451 (2025)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Received: 24th, April 2024, 10th, June 2024

Оригинал: Моисеев С А, Миннегалиев М М, Герасимов К И, Моисеев Е С, Деев А Д, Балега Ю Ю «Оптическая квантовая память на атомных ансамблях: физические принципы, эксперименты и возможности применения в квантовом повторителе» УФН 195 455–477 (2025); DOI: 10.3367/UFNr.2024.06.039694

References (302) ↓ Cited by (7) Similar articles (20)

  1. Nielsen M A, Chuang I L Quantum Computation And Quantum Information 10th anniv. ed. (Cambridge: Cambridge Univ. Press, 2010)
  2. Chanelière T, Hétet G, Sangouard N Advances In Atomic, Molecular, And Optical Physics Vol. 67 (Eds E Arimondo, L F DiMauro, S F Yelin) (London: Academic Press, 2018) p. 77
  3. Heshami K et al J. Mod. Opt. 63 2005 (2016)
  4. Bussières F et al J. Mod. Opt. 60 1519 (2013)
  5. Zhou Z-Q et al Phys. Rev. Lett. 108 190505 (2012)
  6. Sinclair N et al Phys. Rev. Lett. 113 053603 (2014)
  7. Pu Y-F et al Nat. Commun. 8 15359 (2017)
  8. Bonarota M, Le Gouët J-L, Chanelière T New J. Phys. 13 013013 (2011)
  9. Nicolas A et al Nature Photon. 8 234 (2014)
  10. Vashukevich E A, Golubeva T Yu, Golubev Yu M Phys. Rev. A 101 033830 (2020)
  11. Gündoǧan M et al Phys. Rev. Lett. 114 230501 (2015)
  12. Simon C et al Eur. Phys. J. D 58 1 (2010)
  13. Kroutvar M et al Nature 432 81 (2004)
  14. Buckley S, Rivoire K, Vučković J Rep. Prog. Phys. 75 126503 (2012)
  15. Specht H P et al Nature 473 190 (2011)
  16. Maître X et al Phys. Rev. Lett. 79 769 (1997)
  17. Tanabe T et al Phys. Rev. Lett. 102 043907 (2009)
  18. Heshami K et al Phys. Rev. A 89 040301 (2014)
  19. Poem E et al Phys. Rev. B 91 205108 (2015)
  20. Maurer P C et al Science 336 1283 (2012)
  21. Kunkel N, Goldner P Z. Anorg. Allg. Chem. 644 66 (2018)
  22. Goldner P, Ferrier A, Guillot-Noël O Handbook On The Physics And Chemistry Of Rare Earths Vol. 46 (Eds J-C G Bunzli, V K Pecharsky) (Amsterdam: Elsevier, 2015) p. 1
  23. Thiel C W, Böttger T, Cone R L J. Lumin. 131 353 (2011)
  24. Macfarlane R M J. Lumin. 100 1 (2002)
  25. Alexander J et al Phys. Rev. B 106 245416 (2022)
  26. Tittel W et al Laser Photon. Rev. 4 244 (2010)
  27. Pu Y-F et al Nature Photon. 15 374 (2021)
  28. Gisin N et al Rev. Mod. Phys. 74 145 (2002)
  29. Simon C et al Phys. Rev. Lett. 98 190503 (2007)
  30. Sangouard N et al Rev. Mod. Phys. 83 33 (2011)
  31. Yan P-S et al Europhys. Lett. 136 14001 (2021)
  32. Wei S-H et al Laser Photon. Rev. 16 2100219 (2022)
  33. Hu X-M et al Nat. Rev. Phys. 5 339 (2023)
  34. Kok P et al Rev. Mod. Phys. 79 135 (2007)
  35. Clauser J F et al Phys. Rev. Lett. 23 880 (1969)
  36. Brunner N et al Rev. Mod. Phys. 86 419 (2014)
  37. Giovannetti V, Lloyd S, Maccone L Nature Photon. 5 222 (2011)
  38. Stevenson R N et al New J. Phys. 16 033042 (2014)
  39. Manukhova A D et al Phys. Rev. A 96 023851 (2017)
  40. Imamoḡlu A Phys. Rev. Lett. 89 163602 (2002)
  41. Hedges M P et al Nature 465 1052 (2010)
  42. Schraft D et al Phys. Rev. Lett. 116 073602 (2016)
  43. Jozsa R J. Mod. Opt. 41 2315 (1994)
  44. Shor P W Phys. Rev. A 52 R2493 (1995)
  45. Massar S, Popescu S Phys. Rev. Lett. 74 1259 (1995)
  46. Braunstein S L, van Loock P Rev. Mod. Phys. 77 513 (2005)
  47. Hammerer K et al Phys. Rev. Lett. 94 150503 (2005)
  48. Zhong M et al Nature 517 177 (2015)
  49. Heinze G, Hubrich C, Halfmann T Phys. Rev. Lett. 111 033601 (2013)
  50. Gerasimov K et al EPJ Web Conf. 161 01012 (2017)
  51. Kumar P Opt. Lett. 15 1476 (1990)
  52. Petrovnin K V et al Laser Phys. Lett. 16 075401 (2019)
  53. Smirnov M A et al Laser Phys. Lett. 16 115402 (2019)
  54. Zhong T et al Science 357 1392 (2017)
  55. Zhou Z-Q et al Laser Photon. Rev. 17 2300257 (2023)
  56. Saglamyurek E et al Nature Photon. 9 83 (2015)
  57. Corrielli G et al Phys. Rev. Applied 5 054013 (2016)
  58. Ruskuc A et al Nature 602 408 (2022)
  59. Allen L, Eberly J H Optical Resonance And Two-Level Atoms (New York: Wiley, 1975)
  60. Macomber J D The Dynamics Of Spectroscopic Transitions: Illustrated By Magnetic Resonance And Laser Effects (New York: Wiley, 1976); Translated into Russian, Macomber J D Dinamika Spektroskopicheskikh Perekhodov (Moscow: Mir, 1979)
  61. Scully M O, Zubairy M S Quantum Optics (Cambridge: Cambridge Univ. Press, 1997)
  62. Dicke R H Phys. Rev. 93 99 (1954)
  63. Gross M et al Phys. Rev. Lett. 36 1035 (1976)
  64. MacGillivray J C, Feld M S Phys. Rev. A 14 1169 (1976)
  65. Gross M, Haroche S Phys. Rep. 93 301 (1982)
  66. Andreev A V, Emel’yanov V I, Il’inskii Yu A Sov. Phys. Usp. 23 493 (1980); Andreev A V, Emel’yanov V I, Il’inskii Yu A Usp. Fiz. Nauk 131 653 (1980)
  67. Rupasov V I, Yudson V I Sov. Phys. JETP 60 927 (1984); Rupasov V I, Yudson V I Zh. Eksp. Teor. Fiz. 87 1617 (1984)
  68. West J R, Fong B H, Lidar D A Phys. Rev. Lett. 104 130501 (2010)
  69. Steger M et al Science 336 1280 (2012)
  70. Lukin M D Rev. Mod. Phys. 75 457 (2003)
  71. Chen Y-H et al Phys. Rev. Lett. 110 083601 (2013)
  72. Fleischhauer M, Lukin M D Phys. Rev. Lett. 84 5094 (2000)
  73. Reim K F et al Nature Photon. 4 218 (2010)
  74. Gorshkov A V et al Phys. Rev. Lett. 98 123601 (2007)
  75. Saglamyurek E et al Nature Photon. 12 774 (2018)
  76. Rastogi A et al Phys. Rev. A 100 012314 (2019)
  77. Saglamyurek E et al New J. Phys. 23 043028 (2021)
  78. Moiseev S A, Kröll S Phys. Rev. Lett. 87 173601 (2001)
  79. Arecchi F, Bonifacio R IEEE J. Quantum Electron. 1 169 (1965)
  80. McNeil B Nature Photon. 9 207 (2015)
  81. Haken H Laser Theory (Berlin: Springer-Verlag, 1984)
  82. Kogelnik H "Theory of optical waveguides" Guided-Wave Optoelectronics (Springer Series in Electronics and Photonics) Vol. 26 (Ed. T Tamir) (Berlin: Springer, 1988) p. 7
  83. Seri A et al Optica 5 934 (2018)
  84. Arecchi F T Quantum Optics. Proc. of the Intern. School of Physics "Enrico Fermi," Course XLII, July 31—August 19, 1969 (Ed. R J Glauber) (New York: Academic Press, 1969) p. 57; Translated into Russian, Arecchi F T Kvantovye Fluktuatsii Izlucheniya Lazera (Moscow: Mir, 1974)
  85. McCall S L, Hahn E L Phys. Rev. 183 457 (1969)
  86. Lamb G L (Jr.) Phys. Rev. Lett. 31 196 (1973)
  87. Ablowitz M J, Kaup D J, Newell A C J. Math. Phys. 15 1852 (1974)
  88. Kaup D J Phys. Rev. A 16 704 (1977)
  89. Hahn E L, Shiren N S, McCall S L Phys. Lett. A 37 265 (1971)
  90. Zakharov S M, Manykin E M Sov. Phys. JETP 55 227 (1982); Zakharov S M, Manykin E M Zh. Eksp. Teor. Fiz. 82 397 (1982)
  91. Azadeh M et al Phys. Rev. A 57 4662 (1998)
  92. Wang T, Greiner C, Mossberg T W Opt. Commun. 153 309 (1998)
  93. Wang T et al Phys. Rev. A 60 R757 (1999)
  94. Tsang L, Cornish C S, Babbitt W R J. Opt. Soc. Am. B 20 379 (2003)
  95. Moiseev S A, Sabooni M, Urmancheev R V Phys. Rev. Research 2 012026 (2020)
  96. Urmancheev R et al Opt. Express 27 28983 (2019)
  97. Moiseev S A Opt. Spectrosc. 62 180 (1987); Moiseev S A Opt. Spektrosk. 62 302 (1987)
  98. Tavis M, Cummings F W Phys. Rev. 170 379 (1968)
  99. Rupasov V I Sov. Phys. JETP 56 989 (1982); Rupasov V I Zh. Eksp. Teor. Fiz. 83 1711 (1982)
  100. Rupasov V I, Yudson V I Sov. Phys. JETP 59 478 (1984); Rupasov V I, Yudson V I Zh. Eksp. Teor. Fiz. 86 819 (1984)
  101. Maimistov A I et al Phys. Rep. 191 1 (1990)
  102. Abeya A, Biondini G, Hoefer M A J. Phys. A 56 025701 (2023)
  103. Biondini G et al J. Math. Phys. 60 073510 (2019)
  104. Gabitov I R, Zakharov V E, Mikhailov A V Theor. Math. Phys. 63 328 (1985); Gabitov I R, Zakharov V E, Mikhailov A V Teor. Matem. Fiz. 63 (1) 11 (1985)
  105. Sheremet A S et al Rev. Mod. Phys. 95 015002 (2023)
  106. Guerin W, Rouabah M T, Kaiser R J. Mod. Opt. 64 895 (2017)
  107. Kupriyanov D V, Sokolov I M, Havey M D Phys. Rep. 671 1 (2017)
  108. Malikov R F Matematicheskoe Modelirovanie Kooperativnykh Kogerentnykh Effektov V Spektroskopii (Mathematical Simulation Of Cooperative Coherent Effects In Spectroscopy) (Ufa: Gilem, 2006)
  109. Andreev A V, Emelyanov V I, Ilinskii Yu A Cooperative Effects In Optics: Superradiance And Phase Transitions (Bristol: Institute of Physics Publ., 1993); Translated from Russian, Andreev A V, Emelyanov V I, Ilinskii Yu A Kollektivnye Yavleniya V Optike. Sverkhizluchenie. Bistabil’nost’. Fazovye Perekhody (Moscow: Nauka, 1988)
  110. Vinh N T, Tsarev D V, Alodjants A P J. Russ. Laser Res. 42 523 (2021)
  111. Tsarev D V et al Opt. Express 26 19583 (2018)
  112. Izumi S et al Sci. Rep. 8 2999 (2018)
  113. Neergaard-Nielsen J S et al Phys. Rev. Lett. 105 053602 (2010)
  114. Ourjoumtsev A et al Science 312 83 (2006)
  115. Golubeva T Yu et al Laser Phys. Lett. 16 125201 (2019)
  116. Hsu M T L et al Phys. Rev. Lett. 97 183601 (2006)
  117. Liu N et al Nature Mater. 8 758 (2009)
  118. Matsko A B et al Phys. Rev. A 64 043809 (2001)
  119. Shinbrough K, Hunt B D, Lorenz V O Phys. Rev. A 103 062418 (2021)
  120. Nunn J et al Phys. Rev. A 75 011401 (2007)
  121. Kaczmarek K T et al Phys. Rev. A 97 042316 (2018)
  122. Gorshkov A V et al Phys. Rev. A 76 033806 (2007)
  123. Arimondo E "V Coherent population trapping in laser" Progress In Optics Vol. 35 (Ed. E Wolf) (Amsterdam: Elsevier, 1996) p. 257-354
  124. Harris S E Phys. Today 50 (7) 36 (1997)
  125. Autler S H, Townes C H Phys. Rev. 100 703 (1955)
  126. Xiao F et al Phys. Lett. A 327 15 (2004)
  127. Anisimov P M, Dowling J P, Sanders B C Phys. Rev. Lett. 107 163604 (2011)
  128. Lazoudis A et al Phys. Rev. A 82 023812 (2010)
  129. Barberis-Blostein P, Bienert M Phys. Rev. A 79 063824 (2009)
  130. Mikhailov E E et al J. Mod. Opt. 56 1985 (2009)
  131. Phillips D F et al Phys. Rev. Lett. 86 783 (2001)
  132. Gorshkov A V et al Phys. Rev. A 76 033805 (2007)
  133. Appel J et al Phys. Rev. Lett. 100 093602 (2008)
  134. Novikova I, Walsworth R L, Xiao Y Laser Photon. Rev. 6 333 (2012)
  135. Hsiao Y-F et al Phys. Rev. Lett. 120 183602 (2018)
  136. Ma L et al Nat. Commun. 13 2368 (2022)
  137. Katz O, Firstenberg O Nat. Commun. 9 2074 (2018)
  138. Katz O et al Phys. Rev. A 105 042606 (2022)
  139. Vernaz-Gris P et al Nat. Commun. 9 363 (2018)
  140. Cao M et al Optica 7 1440 (2020)
  141. Buser G et al PRX Quantum 3 020349 (2022)
  142. Akhmedzhanov R et al Phys. Rev. B 97 245123 (2018)
  143. Kukharchyk N et al Opt. Express 28 29166 (2020)
  144. Baldit E et al Phys. Rev. B 81 144303 (2010)
  145. Fan H Q et al Phys. Rev. A 99 053821 (2019)
  146. Goldner Ph et al Phys. Rev. A 79 033809 (2009)
  147. Turukhin A V et al Phys. Rev. Lett. 88 023602 (2001)
  148. Ham B S, Shahriar M S, Hemmer P R Opt. Lett. 22 1138 (1997)
  149. Akhmedzhanov R et al J. Mod. Opt. 53 2449 (2006)
  150. Longdell J J et al Phys. Rev. Lett. 95 063601 (2005)
  151. Heinze G, Hubrich C, Halfmann T Phys. Rev. A 89 053825 (2014)
  152. Hain M, Stabel M, Halfmann T New J. Phys. 24 023012 (2022)
  153. Duan L-M et al Nature 414 413 (2001)
  154. Liu J-L et al Nature 629 579 (2024)
  155. Luo X-Y et al Phys. Rev. Lett. 129 050503 (2022)
  156. Yu Y et al Nature 578 240 (2020)
  157. Bajcsy M, Zibrov A S, Lukin M D Nature 426 638 (2003)
  158. Moiseev S A, Ham B S Phys. Rev. A 73 033812 (2006)
  159. Moiseev S A, Ham B S Opt. Spectrosc. 103 210 (2007); Moiseev S A, Ham B S Opt. Spektrosk. 103 219 (2007)
  160. Everett J L et al Adv. Quantum Technol. 2 1800100 (2019)
  161. Iakoupov I, Borregaard J, Sørensen A S Phys. Rev. Lett. 120 010502 (2018)
  162. Lauk N, O’Brien C, Fleischhauer M Phys. Rev. A 88 013823 (2013)
  163. Moiseev E S et al New J. Phys. 22 013014 (2020)
  164. Giner L et al Phys. Rev. A 87 013823 (2013)
  165. Tan C, Huang G J. Opt. Soc. Am. B 31 704 (2014)
  166. Rastogi A et al Phys. Rev. Lett. 129 120502 (2022)
  167. Cong K et al J. Opt. Soc. Am. B 33 C80 (2016)
  168. Flurin E et al Phys. Rev. Lett. 114 090503 (2015)
  169. Sprague M R et al Nature Photon. 8 287 (2014)
  170. Saunders D J et al Phys. Rev. Lett. 116 090501 (2016)
  171. Nunn J et al Phys. Rev. A 96 012338 (2017)
  172. Vernaz-Gris P et al Opt. Express 26 12424 (2018)
  173. Moiseev E S, Moiseev S A New J. Phys. 15 105005 (2013)
  174. Golubeva T et al Eur. Phys. J. D 66 275 (2012)
  175. Tikhonov K, Golubeva T, Golubev Yu Eur. Phys. J. D 69 252 (2015)
  176. Golubeva T et al Phys. Rev. A 83 053810 (2011)
  177. Berezhnoi A D, Kalachev A A Quantum Electron. 47 790 (2017); Berezhnoi A D, Kalachev A A Kvantovaya Electron. 47 790 (2017)
  178. Berezhnoi A D, Zakirov A I, Kalachev A A Laser Phys. Lett. 19 125206 (2022)
  179. Kalachev A et al Laser Phys. 29 104001 (2019)
  180. Hahn E L Phys. Rev. 80 580 (1950)
  181. Kopvillem U Kh, Nagibarov V R Fiz. Met. Metalloved. 15 313 (1963)
  182. Kurnit N A, Abella I D, Hartmann S R Phys. Rev. Lett. 13 567 (1964)
  183. Elyutin S O, Zakharov S M, Manykin E A Sov. Phys. JETP 49 421 (1979); Elyutin S O, Zakharov S M, Manykin E A Zh. Eksp. Teor. Fiz. 76 835 (1979)
  184. Mossberg T W Opt. Lett. 7 77 (1982)
  185. Zuikov V A, Samartsev V V, Usmanov R G JETP Lett. 32 270 (1980); Zuikov V A, Samartsev V V, Usmanov R G Pis’ma Zh. Eksp. Teor. Fiz. 32 293 (1980)
  186. Shtyrkov E I et al Sov. Phys. JETP 54 1041 (1981); Shtyrkov E I et al Zh. Eksp. Teor. Fiz. 81 1977 (1981)
  187. Manykin E A, Samartsev V V Opticheskaya Ekho-Spektroskopiya (Optical Echo Spectroscopy ) (Moscow: Nauka, 1984)
  188. Mossberg T W Conf. Proc., IEEE Lasers and Electro-Optics Society Annual Meeting, October 17-20, 1989, Orlando, FL, USA p. 183
  189. Lin H, Wang T, Mossberg T W Opt. Lett. 20 1658 (1995)
  190. Evseev I V, Rubtsova N N, Samartsev V V Kogerentnye Perekhodnye Protsessy V Optike (Coherent Transient Processes In Optics ) (Moscow: Fizmatlit, 2009)
  191. Sjaarda Cornish C, Babbitt W R, Tsang L Opt. Lett. 25 1276 (2000)
  192. Ruggiero J et al Phys. Rev. A 79 053851 (2009)
  193. Lamb G L (Jr.) Elements Of Soliton Theory (New York: Wiley, 1980)
  194. Sangouard N et al Phys. Rev. A 81 062333 (2010)
  195. Kraus B et al Phys. Rev. A 73 020302 (2006)
  196. Alexander A L et al Phys. Rev. Lett. 96 043602 (2006)
  197. Lauritzen B et al Phys. Rev. Lett. 104 080502 (2010)
  198. Moiseev S A Opt. Spectrosc. 94 788 (2003); Moiseev S A Opt. Spektrosk. 94 847 (2003)
  199. Moiseev S A, Noskov M I Laser Phys. Lett. 1 303 (2004)
  200. Moiseev S A, Ham B S Phys. Rev. A 70 063809 (2004)
  201. Moiseev S A Bull. Russ. Acad. Sci. Phys. 68 1408 (2004); Moiseev S A Izv. Ross. Akad. Nauk Ser. Fiz. 68 1260 (2004)
  202. Sangouard N et al Phys. Rev. A 75 032327 (2007)
  203. Moiseev S A J. Phys. B 40 3877 (2007)
  204. Moiseev S A, Tittel W New J. Phys. 13 063035 (2011)
  205. Moiseev S A et al Phys. Rev. A 107 043708 (2023)
  206. Moiseev S A, Tittel W Phys. Rev. A 82 012309 (2010)
  207. Fleischhauer M, Imamoglu A, Marangos J P Rev. Mod. Phys. 77 633 (2005)
  208. Hioe F T Phys. Rev. A 30 2100 (1984)
  209. Silver M S, Joseph R I, Hoult D I Phys. Rev. A 31 2753 (1985)
  210. Ermakov V L, Bohlen J M, Bodenhausen G J. Magn. Reson. A 103 226 (1993)
  211. Sarkar S et al J. Magn. Reson. 328 107002 (2021)
  212. Roos I, Mølmer K Phys. Rev. A 69 022321 (2004)
  213. Damon V et al New J. Phys. 13 093031 (2011)
  214. Gerasimov K I et al Opt. Spectrosc. 123 211 (2017); Gerasimov K I et al Opt. Spektrosk. 123 200 (2017)
  215. Fraval E, Sellars M J, Longdell J J Phys. Rev. Lett. 95 030506 (2005)
  216. Viola L, Knill E, Lloyd S Phys. Rev. Lett. 82 2417 (1999)
  217. Souza A M, Ávarez G A, Suter D Phys. Rev. Lett. 106 240501 (2011)
  218. Du J et al Nature 461 1265 (2009)
  219. Ma Y et al Nat. Commun. 12 2381 (2021)
  220. Merkel B, Cova Fariña P, Reiserer A Phys. Rev. Lett. 127 030501 (2021)
  221. Moiseev S A, Skrebnev V A J. Phys. B 48 135503 (2015)
  222. Moiseev S A, Skrebnev V A Phys. Rev. A 91 022329 (2015)
  223. Minnegaliev M M et al Opt. Spectrosc. 126 1 (2019); Minnegaliev M M et al Opt. Spektrosk. 126 9 (2019)
  224. Waeber A M et al Nat. Commun. 10 3157 (2019)
  225. Saidasheva I S, Arslanov N M, Moiseev S A 6th Intern. Congress ’Basic Problems of Optics’ St. Petersburg, Russia, 16 - 20 October, 2006 p. 137
  226. Moiseev S A, Arslanov N M Phys. Rev. A 78 023803 (2008)
  227. Hétet G et al Phys. Rev. Lett. 100 023601 (2008)
  228. Alexander A L et al J. Lumin. 127 94 (2007)
  229. Hosseini M et al Nat. Commun. 2 174 (2011)
  230. Hosseini M et al Nature 461 241 (2009)
  231. Cho Y-W et al Optica 3 100 (2016)
  232. Sparkes B M et al Phys. Rev. X 2 021011 (2012)
  233. Arslanov N M, Moiseev S A Uchenye Zapiski Kazanskogo Univ. 152 27 (2010)
  234. Glorieux Q et al Opt. Express 20 12350 (2012)
  235. Campbell G T et al Phys. Rev. Lett. 113 063601 (2014)
  236. Silberhorn Ch, Korolkova N, Leuchs G Phys. Rev. Lett. 88 167902 (2002)
  237. Tsarev D V et al New J. Phys. 21 083041 (2019)
  238. Lai Y, Haus H A Phys. Rev. A 40 854 (1989)
  239. Dubetskii B Ya, Chebotaev V P Izv. Ross. Akad. Nauk Ser. Fiz. 50 1530 (1986)
  240. Dubetskii B Ya, Chebotaev V P JETP Lett. 41 328 (1985); Dubetskii B Ya, Chebotaev V P Pis’ma Zh. Eksp. Teor. Fiz. 41 267 (1985)
  241. de Riedmatten H et al Nature 456 773 (2008)
  242. Moiseev S A, Andrianov S N, Gubaidullin F F Phys. Rev. A 82 022311 (2010)
  243. Sabooni M et al Phys. Rev. Lett. 110 133604 (2013)
  244. Jobez P et al New J. Phys. 16 083005 (2014)
  245. Duranti S et al Opt. Express 32 26884 (2024)
  246. Akhmedzhanov R A et al Laser Phys. Lett. 13 115203 (2016)
  247. Liu D-C et al Phys. Rev. Lett. 129 210501 (2022)
  248. Horvath S P et al Phys. Rev. Research 3 023099 (2021)
  249. Holzäpfel A et al New J. Phys. 22 063009 (2020)
  250. Moiseev S A, Le Gouët J-L J. Phys. B 45 124003 (2012)
  251. Arslanov N M, Moiseev S A Quantum Electron. 47 783 (2017); Arslanov N M, Moiseev S A Kvantovaya Elektron. 47 783 (2017)
  252. Arslanov N M, Moiseev S A Opt. Spectrosc. 126 29 (2019); Arslanov N M, Moiseev S A Opt. Spektrosk. 126 37 (2019)
  253. Stuart J S et al Phys. Rev. Research 3 L032054 (2021)
  254. Cruzeiro E Z et al New J. Phys. 20 053013 (2018)
  255. Akhmedzhanov R A et al Laser Phys. Lett. 13 015202 (2016)
  256. Rieländer D et al Phys. Rev. Lett. 112 040504 (2014)
  257. Akhmedzhanov R A et al Laser Phys. Lett. 20 015204 (2023)
  258. Businger M et al Nat. Commun. 13 6438 (2022)
  259. Saglamyurek E et al Nature 469 512 (2011)
  260. Rakonjac J V et al Sci. Adv. 8 eabn3919 (2022)
  261. Craiciu I et al Optica 8 114 (2021)
  262. Bonarota M et al J. Phys. B 45 124002 (2012)
  263. Gerasimov K I, Moiseev S A, Zaripov R B Appl. Magn. Reson. 48 795 (2017)
  264. Matanin A R et al Phys. Rev. Applied 19 034011 (2023)
  265. McAuslan D L et al Phys. Rev. A 84 022309 (2011)
  266. Moiseev S A Phys. Rev. A 83 012307 (2011)
  267. Arcangeli A, Ferrier A, Goldner Ph Phys. Rev. A 93 062303 (2016)
  268. Dajczgewand J et al Opt. Lett. 39 2711 (2014)
  269. Bonarota M et al Laser Phys. 24 094003 (2014)
  270. Liu C et al Optica 7 192 (2020)
  271. Minnegaliev M M et al JETP Lett. 115 720 (2022); Minnegaliev M M et al Pis’ma Zh. Eksp. Teor. Fiz. 115 769 (2022)
  272. Minnegaliev M M, Gerasimov K I, Moiseev S A JETP Lett. 117 865 (2023); Minnegaliev M M, Gerasimov K I, Moiseev S A Pis’ma Zh. Eksp. Teor. Fiz. 117 867 (2023)
  273. Minnegaliev M M et al Quantum Electron. 48 894 (2018); Minnegaliev M M et al Kvantovaya Elektron. 48 894 (2018)
  274. Minnegaliev M M et al Phys. Rev. B 103 174110 (2021)
  275. Liu J et al Opt. Express 32 6986 (2024)
  276. Ma Y-Z et al Nat. Commun. 12 4378 (2021)
  277. Wang S, Wang M Appl. Opt. 63 2608 (2024)
  278. Anwar A et al Rev. Sci. Instrum. 92 041101 (2021)
  279. Slattery O et al J. Res. Natl. Inst. Stand. Technol. 124 124019 (2019)
  280. Lago-Rivera D et al Nature 594 37 (2021)
  281. Lago-Rivera D et al Nat. Commun. 14 1889 (2023)
  282. Rančić M et al Nat. Phys. 14 50 (2018)
  283. Puigibert M G et al Phys. Rev. Research 2 013039 (2020)
  284. Liu X et al Nature 594 41 (2021)
  285. Minnegaliev M M et al AIP Conf. Proc. 1936 020012 (2018)
  286. Afzelius M, Simon C Phys. Rev. A 82 022310 (2010)
  287. Moiseev S A Phys. Rev. A 88 012304 (2013)
  288. Kindem J M et al Nature 580 201 (2020)
  289. Pak D et al Commun. Phys. 5 89 (2022)
  290. Moiseev E S et al New J. Phys. 23 063071 (2021)
  291. Mazelanik M et al Npj Quantum Inf. 5 22 (2019)
  292. Minnegaliev M M et al Opt. Spectrosc. 131 602 (2023); Minnegaliev M M et al Opt. Spektrosk. 131 642 (2023)
  293. Xu Y et al Nat. Commun. 12 4453 (2021)
  294. Li L, Kong W, Chen F Adv. Photonics 4 024002 (2022)
  295. Liu J et al APL Photonics 5 066105 (2020)
  296. Moqanaki A, Massa F, Walther P APL Photonics 4 090804 (2019)
  297. Gerasimov K I et al HOLOEXPO-2023. Tezisy Dokladov 20-i Mezhdunarodnoi Konf. po Golografii i Prikladnym Opticheskim Tekhnologiyam, Sochi, 12-15 Sentyabrya 2023 Goda (HOLOEX-PO-2023. Abstracts of the 20th Intern. Conf. on Holography and Applied Optical Technologies, Sochi, 12-15 Sept. 2023) (St. Petersburg: Sankt-Peterburgskii Gos. Elektrotekh. Univ. ’LETI’ im. V.I. Ul’yanova, 2023) p. 293
  298. Dousse A et al Nature 466 217 (2010)
  299. Liu J et al Nat. Nanotechnol. 14 586 (2019)
  300. Chopin A et al Commun. Phys. 6 77 (2023)
  301. Wang X et al Npj Quantum Inf. 9 38 (2023)
  302. Moiseev S A, Gerasimov K I, Minnegaliev M M, Moiseev E S Phys. Rev. Lett. 134 070803 (2025)

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