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Nonequilibrium transitions, chaos, and chimera states in exciton—polariton systems

 a, b
a Osipyan Institute of Solid State Physics, Russian Academy of Sciences, Akademika Osip'yana str. 2, Chernogolovka, Moscow Region, 142432, Russian Federation
b HSE University, ul. Myasnitskaya 20, Moscow, 101000, Russian Federation

The review is devoted to exciton polaritons, short-lived Bose particles which are optically excited in semiconductors and form macroscopically coherent states under the conditions of coherent and resonant external driving. Interaction of polaritons results in multistability, spontaneous breaking of spin and spatial symmetries, self-pulsations, and pattern formation. As a result of symmetry breaking, paradoxical 'chimera states' can arise in which ordered and chaotic subsystems coexist and in some way complement each other.

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Fulltext is also available at DOI: 10.3367/UFNe.2019.04.038549
Keywords: polariton, Bose--Einstein condensate, spinor condensate, multistability, spontaneous symmetry breaking, self-pulsations, dynamical chaos, chimera states, self-organization
PACS: 03.75.Kk, 05.45.Xt, 05.65.+b, 42.65.Sf, 47.20.Ky, 71.36.+c (all)
DOI: 10.3367/UFNe.2019.04.038549
URL: https://ufn.ru/en/articles/2020/2/b/
000537855900002
2-s2.0-85085242784
2020PhyU...63..123G
Citation: Gavrilov S S "Nonequilibrium transitions, chaos, and chimera states in exciton—polariton systems" Phys. Usp. 63 123–144 (2020)
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Received: 6th, September 2018, revised: 3rd, April 2019, 10th, April 2019

Оригинал: Гаврилов С С «Неравновесные переходы, хаос и химерные состояния в системах экситонных поляритонов» УФН 190 137–159 (2020); DOI: 10.3367/UFNr.2019.04.038549

References (172) ↓ Cited by (17) Similar articles (20)

  1. Hopfield J J Phys. Rev. 112 1555 (1958)
  2. Weisbuch C et al Phys. Rev. Lett. 69 3314 (1992)
  3. Yamamoto Y, Tassone T, Cao H Semiconductor Cavity Quantum Electrodynamics (Berlin: Springer, 2000)
  4. Kavokin A V et al Microcavities 2nd ed. (Oxford: Oxford Univ. Press, 2017)
  5. Deng H, Haug H, Yamamoto Y Rev. Mod. Phys. 82 1489 (2010)
  6. Pitaevskii L, Stringari S Bose - Einstein Condensation And Superfluidity (Oxford: Oxford Univ. Press, 2016)
  7. Kasprzak J et al Nature 443 409 (2006)
  8. Balili R et al Science 316 1007 (2007)
  9. Baumberg J J et al Phys. Rev. Lett. 101 136409 (2008)
  10. Plumhof J D et al Nature Mater 13 247 (2014)
  11. Daskalakis K S et al Nature Mater. 13 271 (2014)
  12. Timofeev V B Fiz. Tekh. Poluprovodn. 46 865 (2012); Timoffeev V B Semiconductors 46 843 (2012)
  13. Carusotto I, Ciuti C Rev. Mod. Phys. 85 299 (2013)
  14. Lagoudakis K G et al Phys. Rev. Lett. 105 120403 (2010)
  15. Abbarchi M et al Nature Phys. 9 275 (2013)
  16. Lagoudakis K G et al Nature Phys. 4 706 (2008)
  17. Keeling J, Berloff N G Phys. Rev. Lett. 100 250401 (2008)
  18. Amo A et al Science 332 1167 (2011)
  19. Tosi G et al Nature Commun 3 1243 (2012)
  20. Berloff N G et al Nature Mater 16 1120 (2017)
  21. Keldysh L V "Kogerentnoe sostoyanie eksitonov" Problemy Teoreticheskoi Fiziki. Pamyati Igorya Evgen’evicha Tamma (Otv. red. V I Ritus) (M.: Nauka, 1972) p. 433
  22. Keldysh L V Usp. Fiz. Nauk 187 1273 (2017); Keldysh L V Phys. Usp. 60 1180 (2017)
  23. Elesin V F, Kopaev Yu V Zh. Eksp. Teor. Fiz. 63 1447 (1972); Elesin V F, Kopaev Yu V Sov. Phys. JETP 36 767 (1973)
  24. Baas A et al Phys. Rev. Lett. 96 176401 (2006)
  25. Lugiato L A, Lefever R Phys. Rev. Lett 58 2209 (1987)
  26. Gippius N A et al Europhys. Lett 67 997 (2004)
  27. Baas A et al Phys. Rev. A 69 023809 (2004)
  28. Gippius N A et al Phys. Rev. Lett 98 236401 (2007)
  29. Shelykh I A, Liew T C H, Kavokin A V Phys. Rev. Lett 100 116401 (2008)
  30. Gavrilov S S i dr Zh. Eksp. Teor. Fiz. 137 943 (2010); Gavrilov S S et al JETP 110 825 (2010)
  31. Paraïso T K et al Nature Mater 9 655 (2010)
  32. Sarkar D et al Phys. Rev. Lett 105 216402 (2010)
  33. Adrados C et al Phys. Rev. Lett. 105 216403 (2010)
  34. Amo A et al Nature Photon. 4 361 (2010)
  35. Cerna R et al Nature Commun. 4 2008 (2013)
  36. Stevenson R M et al Phys. Rev. Lett 85 3680 (2000)
  37. Butté R et al Phys. Rev. B 68 115325 (2003)
  38. Ciuti C, Schwendimann P, Quattropani A Semicond. Sci. Technol. 18 S279 (2003)
  39. Gippius N A, Tikhodeev S G J. Phys. Condens. Matter 16 S3653 (2004)
  40. Whittaker D M Phys. Rev. B 71 115301 (2005)
  41. Krizhanovskii D N et al Phys. Rev. Lett 97 097402 (2006)
  42. Demenev A A et al Phys. Rev. Lett. 101 136401 (2008)
  43. Krizhanovskii D N et al Phys. Rev. B 77 115336 (2008)
  44. Ballarini D et al Phys. Rev. Lett 102 056402 (2009)
  45. Ballarini D et al Nature Commun 4 1778 (2013)
  46. Bogolyubov N N Izv. AN SSSR. Ser. Fiz. 11 77 (1947); Bogolubov N J. Phys. USSR 11 23 (1947)
  47. Carusotto I, Ciuti C Phys. Rev. Lett. 93 166401 (2004)
  48. Amo A et al Nature Phys. 5 805 (2009)
  49. Lerario G et al Nature Phys 13 837 (2017)
  50. Gavrilov S S Phys. Rev. B 90 205303 (2014)
  51. Gavrilov S S et al Phys. Rev. B 92 205312 (2015)
  52. Whittaker C E et al Phys. Rev. X 7 031033 (2017)
  53. Gavrilov S S Phys. Rev. B 94 195310 (2016)
  54. Gavrilov S S Phys. Rev. Lett. 120 033901 (2018)
  55. Gavrilov S S et al Appl. Phys. Lett 102 011104 (2013)
  56. Sekretenko A V et al Phys. Rev. B 88 205302 (2013)
  57. Gavrilov S S et al Phys. Rev. B 90 235309 (2014)
  58. Gavrilov S S Pis’ma ZhETF 105 187 (2017); Gavrilov S S JETP Lett 105 200 (2017)
  59. Argyris A et al Nature 438 343 (2005)
  60. Sciamanna M, Shore K A Nature Photon 9 151 (2015)
  61. Kuramoto Y, Battogtokh D Nonlin. Phenom. Complex Syst 5 380 (2002)
  62. Abrams D M, Strogatz S H Phys. Rev. Lett 93 174102 (2004)
  63. Hagerstorm A M et al Nature Phys. 8 658 (2012)
  64. Panaggio M J, Abrams D M Nonlinearity 28 R67 (2015)
  65. Omel’chenko O E Nonlinearity 31 R121 (2018)
  66. Larger L, Penkovsky B, Maistrenko Yu Nature Commun 6 7752 (2015)
  67. Larger L, Penkovsky B, Maistrenko Yu Phys. Rev. Lett 111 054103 (2013)
  68. Martens E A et al Proc. Natl. Acad. Sci. USA 110 10563 (2013)
  69. Tinsley M R, Nkomo S, Showalter K Nature Phys. 8 662 (2012)
  70. Majhi S et al Phys. Life Rev. 28 100 (2019)
  71. Andrzejak R G et al Sci. Rep. 6 23000 (2016)
  72. Keldysh L V, Kozlov A N Zh. Eksp. Teor. Fiz. 54 978 (1968); Keldysh L V, Kozlov A N Sov. Phys. JETP 27 521 (1968)
  73. Snoke D, Kavoulakis G M Rep. Prog. Phys. 77 116501 (2014)
  74. Savona V et al Phys. Rev. B 49 8774 (1994)
  75. Messin G et al Phys. Rev. Lett 87 127403 (2001)
  76. Sun Y et al Nature Phys. 13 870 (2017)
  77. Sibel’din N N Usp. Fiz. Nauk 187 1236 (2017); Sibeldin N N Phys. Usp. 60 1147 (2017)
  78. Ciuti C et al Phys. Rev. B 58 7926 (1998)
  79. Vladimirova M et al Phys. Rev. B 82 075301 (2010)
  80. Sekretenko A V, Gavrilov S S, Kulakovskii V D Phys. Rev. B 88 195302 (2013)
  81. Shelykh L A et al Semicond. Sci. Technol 25 013001 (2010)
  82. Voronova N S, Elistratov A A, Lozovik Yu E Phys. Rev. Lett 115 186402 (2015)
  83. Gippius N A i dr Usp. Fiz. Nauk 175 327 (2005); Gippius N A et al Phys. Usp 48 306 (2005)
  84. Gavrilov S S, Tikhodeev S G Pis’ma ZhETF 94 690 (2011); Gavrilov S S, Tikhodeev S G JETP Lett. 94 647 (2011)
  85. Gibbs H M, McCall S L, Venkatesan T N C Phys. Rev. Lett 36 1135 (1976)
  86. Haken H Synergetics. An Introduction. Nonequilibrium Phase Transitions And Self-Organization In Physics, Chemistry, And Biology (Springer Series in Synergetics) Vol. 1 (Berlin: Springer, 1983)
  87. Demenev A A, Gavrilov S S, Kulakovskii V D Phys. Rev. B 81 035328 (2010)
  88. Gavrilov S S i dr Pis’ma ZhETF 92 194 (2010); Gavrilov S S et al JETP Lett 92 171 (2010)
  89. Vishnevsky D V et al Phys. Rev. B 85 155328 (2012)
  90. Gavrilov S S et al Phys. Rev. B 85 075319 (2012)
  91. Wouters M et al Phys. Rev. B 87 045303 (2013)
  92. Uvarov A V et al Phys. Rev. A 99 033837 (2019)
  93. Gavrilov S S, Gippius N A Phys. Rev. B 86 085317 (2012)
  94. Akimov A V et al Phys. Rev. Lett 97 037401 (2006)
  95. Scherbakov A V et al Phys. Rev. B 78 241302(R) (2008)
  96. Krizhanovskii D N et al Phys. Rev. B 87 155423 (2013)
  97. Liew T C H, Kavokin A V, Shelykh I A Phys. Rev. Lett 101 016402 (2008)
  98. Egorov O A et al Phys. Rev. Lett 102 153904 (2009)
  99. Egorov O A, Skryabin D V, Lederer F Phys. Rev. B 84 165305 (2011)
  100. Sich M et al Nature Photon. 6 50 (2012)
  101. Sich M et al Phys. Rev. Lett 112 046403 (2014)
  102. Gavrilov S S J. Phys. Conf. Ser. 1164 012014 (2019)
  103. Haken H Rev. Mod. Phys 47 67 (1975)
  104. Gavrilov S S i dr Pis’ma ZhETF 101 9 (2015); Gavrilov S S et al JETP Lett 101 7 (2015)
  105. Brichkin A S et al Phys. Rev. B 92 125155 (2015)
  106. McLaughlin D W et al Phys. Rev. A 34 1200 (1986)
  107. Landman M J et al Phys. Rev. A 38 3837 (1988)
  108. Flayac H, Savona V Phys. Rev. A 95 043838 (2017)
  109. Liew T C H, Rubo Y G Phys. Rev. B 97 041302(R) (2018)
  110. Wang T et al Phys. Rev. A 92 012316 (2015)
  111. Karr J Ph et al Phys. Rev. A 69 031802(R) (2004)
  112. Savvidis P G et al Phys. Rev. Lett 84 1547 (2000)
  113. Ciuti C et al Phys. Rev. B 62 R4825 (2000)
  114. Baumberg J J et al Phys. Rev. B 62 R16247 (2000)
  115. Kulakovskii V D et al Nanotechnology 12 475 (2001)
  116. Whittaker D M Phys. Rev. B 63 193305 (2001)
  117. Ciuti C, Schwendimann P, Quattropani A Phys. Rev. B 63 041303(R) (2001)
  118. Gavrilov S S i dr Zh. Eksp. Teor. Fiz. 131 819 (2007); Gavrilov S S et al JETP 104 715 (2007)
  119. Demenev A A et al Phys. Rev. B 79 165308 (2009)
  120. Kulakovskii V D et al Exciton Polaritons In Microcavities (Springer Series in Solid-State Sciences) Vol. 172 (Eds D Sanvitto, V Timofeev) (Berlin: Springer, 2012) p. 43
  121. Maslova N S, Johne R, Gippius N A Pis’ma ZhETF 86 135 (2007); Maslova N S, Johne R, Gippius N A JETP Lett. 86 126 (2007)
  122. Johne R, Maslova N S, Gippius N A Solid State Commun 149 496 (2009)
  123. Maslova N S, Johne R, Gippius N A Pis’ma ZhETF 89 718 (2009); Maslova N S, Johne R, Gippius N A JETP Lett. 89 614 (2009)
  124. Bozat Ö, Savenko I G, Shelykh I A Phys. Rev. B 86 035413 (2012)
  125. Rodriguez S R K et al Phys. Rev. Lett. 118 247402 (2017)
  126. Demenev A A, Gavrilov S S, Kulakovskii V D Phys. Rev. B 84 085305 (2011)
  127. Demenev A A, Gavrilov S S, Kulakovskii V D Pis’ma ZhETF 95 42 (2012); Demenev A A, Gavrilov S S, Kulakovskii V D JETP Lett. 95 38 (2012)
  128. Carusotto I et al Phys. Rev. Lett 97 260403 (2006)
  129. Gavrilov S S et al Phys. Rev. B 87 201303(R) (2013)
  130. Gavrilov S S, Demenev A A, Kulakovskii V D Pis’ma ZhETF 100 923 (2015); Gavrilov S S, Demenev A A, Kulakovskii V D JETP Lett 100 817 (2015)
  131. Gavrilov S S, Kulakovskii V D Pis’ma ZhETF 104 849 (2016); Gavrilov S S, Kulakovskii V D JETP Lett 104 827 (2016)
  132. Josephson B Phys. Lett. 1 251 (1962)
  133. Raghavan S et al Phys. Rev. A 59 620 (1999)
  134. Albiez M et al Phys. Rev. Lett 95 010402 (2005)
  135. Cataliotti F S et al Science 293 843 (2001)
  136. Levy S et al Nature 449 579 (2007)
  137. Magnusson E B et al Phys. Rev. B 82 195312 (2010)
  138. Read D, Rubo Yu G, Kavokin A V Phys. Rev. B 81 235315 (2010)
  139. Zhang C, Jin G Phys. Rev. B 84 115324 (2011)
  140. Pavlovic G, Malpuech G, Shelykh I A Phys. Rev. B 87 125307 (2013)
  141. Sarchi D et al Phys. Rev. B 77 125324 (2008)
  142. Shelykh I A et al Phys. Rev. B 78 041302(R) (2008)
  143. Gavrilov S S arXiv:1909.10050
  144. Demenev A A et al Phys. Rev. B 94 195302 (2016)
  145. Ohadi H et al Phys. Rev. X 5 031002 (2015)
  146. Askitopoulos A et al Phys. Rev. B 93 205307 (2016)
  147. Lorenz E N J. Atmos. Sci 20 130 (1963)
  148. Haken H Phys. Lett. A 53 77 (1975)
  149. Virte M et al Nature Photon 7 60 (2013)
  150. Virte M, Panajotov K, Sciamanna M Phys. Rev. A 87 013834 (2013)
  151. Ikeda K, Daido H, Akimoto O Phys. Rev. Lett 45 709 (1980)
  152. Arecchi F T et al Phys. Rev. Lett 65 2531 (1990)
  153. Vicente R et al IEEE J. Quant. Electron 41 541 (2005)
  154. Albert F et al Nature Commun 2 366 (2011)
  155. Rontani D et al Opt. Lett. 32 2960 (2007)
  156. Selmi F et al Phys. Rev. Lett. 116 013901 (2016)
  157. Coulibaly S et al Phys. Rev. A 95 023816 (2017)
  158. Elsass T et al Eur. Phys. J. D 59 91 (2010)
  159. Ferré M A et al Eur. Phys. J. D 71 172 (2017)
  160. Solnyshkov D D et al Phys. Rev. B 80 235303 (2009)
  161. Krizhanovskii D N et al Phys. Rev. B 73 073303 (2006)
  162. Solnyshkov D D et al Phys. Rev. B 77 045314 (2008)
  163. Aranson I S, Kramer L Rev. Mod. Phys 74 99 (2002)
  164. Bohr T et al Dynamical Systems Approach To Turbulence (Cambridge: Cambridge Univ. Press, 1998)
  165. Cross M C, Hohenberg P C Rev. Mod. Phys 65 851 (1993)
  166. Couairon A, Mysyrowicz A Phys. Rep 441 47 (2007)
  167. de Valcárcel G J, Staliunas K Phys. Rev. E 67 026604 (2003)
  168. de Valcárcel G J, Staliunas K Phys. Rev. Lett 105 054101 (2010)
  169. Boninsegni M, Prokof’ev N V Rev. Mod. Phys 84 759 (2012)
  170. Léonard J et al Nature 543 87 (2017)
  171. Li J-R et al Nature 543 91 (2017)
  172. Pomeau Y, Manneville P Commun. Math. Phys 74 189 (1980)

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