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2001

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February

  

Reviews of topical problems


Double exchange model and the unique properties of the manganites

,
Mikheev Institute of Metal Physics, Ural Division of the Russian Academy of Sciences, S Kovalevskoi str. 18, Ekaterinburg, 620108, Russian Federation

In this review the double exchange (DE) model forming a basis for the description of the physics of colossal magnetoresistance manganites is discussed. For a limiting case of exchange interaction which is large compared with the band width, the effective Hamiltonian of the DE model is derived from that of the sd-exchange model. Since this Hamiltonian is very complicated, the dynamical mean field approximation, successful for other strongly correlated systems, is found to be more suitable for describing the model of interest. Two simplified versions of the DE model, both capable of accounting for a wide range of physical properties, are proposed — one using classical localized spins and the other involving quantum spins but no transverse spin fluctuations. A temperature-electron concentration phase diagram for a system with consideration for the domain of phase separation is constructed, whose basic features are shown to be in qualitative agreement with experimental data for the manganites, as also are the temperature and electron concentration dependences of their electrical resistivity, magnetization, and spectral characteristics. At the quantitative level, introducing additional electron-lattice interaction yields a good agreement. A number of yet unresolved problems in the physics of manganites, including the mechanism of temperature- or doping-induced metal-insulator phase transition and the nature of charge ordering, are also discussed. By comparing predictions made by computing approach with the experimental data, the adequacy of the DE model is assessed and its drawbacks are analyzed. Numerous recent theoretical studies of the unique properties of this broad class of strongly correlated systems are summarized in this review.

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Fulltext is also available at DOI: 10.1070/PU2001v044n02ABEH000840
PACS: 75.10.−b, 75.30.−m, 75.30.Vn, 75.50.−y (all)
DOI: 10.1070/PU2001v044n02ABEH000840
URL: https://ufn.ru/en/articles/2001/2/a/
000170938500001
Citation: Izyumov Yu A, Skryabin Yu N "Double exchange model and the unique properties of the manganites" Phys. Usp. 44 109–134 (2001)
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Оригинал: Изюмов Ю А, Скрябин Ю Н «Модель двойного обмена и уникальные свойства манганитов» УФН 171 121–148 (2001); DOI: 10.3367/UFNr.0171.200102a.0121

References (119) Cited by (161) ↓ Similar articles (20)

  1. Namboothiri P, K J V et al RSC Adv. 15 (11) 8561 (2025)
  2. Chi H, Leng Y et al Angewandte Chemie 137 (19) (2025)
  3. Leon R S, Manuz I G et al J. Phys. D: Appl. Phys. 58 (46) 465301 (2025)
  4. Suresh S, Vindhya P S, Kavitha V T Ceramics International 51 (20) 32126 (2025)
  5. Sharma R, Kumar P, Anil Physics Open 24 100272 (2025)
  6. Permyakova A E, Russkikh O V, Ostroushko A A Int. J Self-Propag. High-Temp. Synth. 34 (1) 16 (2025)
  7. Belguet R, Mahamdioua N et al J Low Temp Phys 219 (3-4) 123 (2025)
  8. Pradhan K, Sen D et al Phys. Rev. B 111 (18) (2025)
  9. Boora N, Ahmad R et al Magnetochemistry 11 (1) 5 (2025)
  10. Chi H, Leng Y et al Angew Chem Int Ed 64 (19) (2025)
  11. Zaripov R B, Ulanov V A et al Bull. Russ. Acad. Sci. Phys. 88 (12) 1921 (2024)
  12. Tran T-M T, Phan V-N, Tran M-T Phys. Scr. 99 (6) 065977 (2024)
  13. Zheng L, Wang Yu et al Chemical Physics Letters 852 141520 (2024)
  14. Bai H, Yu Zh et al Nanoscale 16 (3) 1362 (2024)
  15. Khan S, Aw E S Y et al Advanced Materials 36 (36) (2024)
  16. Sizov V E, Shaikhulov T A Izvestiâ Akademii Nauk SSSR. Seriâ Fizičeskaâ 87 (10) 1507 (2023) [Sizov V E, Shaikhulov T A Bull. Russ. Acad. Sci. Phys. 87 (10) 1540 (2023)]
  17. Bai H, Liu D, Pan H Mater. Horiz. 10 (11) 5126 (2023)
  18. Liedienov N A, Fesych I V et al Journal Of Alloys And Compounds 938 168591 (2023)
  19. Steblevskaya N I, Ziatdinov A M et al Russ. J. Inorg. Chem. 68 (12) 1737 (2023)
  20. Selmi R, Cherif W et al J Mater Sci: Mater Electron 33 (3) 1703 (2022)
  21. Tran M-T, Nguyen D-B et al Phys. Rev. B 105 (15) (2022)
  22. Bai H, Wu Q et al Adv Elect Materials 8 (10) (2022)
  23. Tran M-T, Tran T-M T J. Phys.: Condens. Matter 34 (27) 275603 (2022)
  24. Kugel K I, Rakhmanov A L, Sboychakov A O Phys. Metals Metallogr. 123 (7) 674 (2022)
  25. Yang Ya, Guo P et al Computational Materials Science 200 110839 (2021)
  26. Romanova O B, Kretinin V V et al Phys. Solid State 63 (6) 897 (2021)
  27. Dasgupta P, Paul S et al Phys. Rev. B 104 (3) (2021)
  28. Das S, Ghosh S et al AIP Advances 11 (12) (2021)
  29. Belozerova N M, Kichanov S E et al Materials Chemistry And Physics 262 124310 (2021)
  30. Paul S, Yarlagadda S Phys. Rev. B 103 (3) (2021)
  31. Pankratova A K, Igoshev P A, Irkhin V Yu J. Phys.: Condens. Matter 33 (37) 375802 (2021)
  32. Khomskii D I, Streltsov S V Chem. Rev. 121 (5) 2992 (2021)
  33. Nikolaeva O, Kapishnikov A, Gerasimov E Nanomaterials 11 (9) 2283 (2021)
  34. Chiang Yu N, Dzyuba M O Low Temperature Physics 46 (6) 559 (2020)
  35. Razaq D S, Kurniawan B et al Crystals 10 (5) 407 (2020)
  36. Gerasimov E Yu, Rogov V A et al Catalysts 9 (6) 563 (2019)
  37. Udalov O G, Beloborodov I S Phys. Rev. B 100 (15) (2019)
  38. Ben M S, Gagou Y et al J Mater Sci: Mater Electron 30 (23) 20459 (2019)
  39. Samoilenko Z A, Ivakhnenko N N et al Inorg Mater 54 (4) 354 (2018)
  40. Gonchar L E Journal Of Magnetism And Magnetic Materials 465 661 (2018)
  41. Mahmood Q, Ali S A et al Materials Chemistry And Physics 211 428 (2018)
  42. Mamin R F, Shaposhnikova T S, Kabanov V V Phys. Rev. B 97 (9) (2018)
  43. Bebenin N G, Zainullina R I, Ustinov V V Phys.-Usp. 61 (8) 719 (2018)
  44. Paul S, Pankaj R et al Phys. Rev. B 96 (19) (2017)
  45. Pashchenko V A, Galetich I K et al Low Temperature Physics 43 (11) 1305 (2017)
  46. Pashchenko A V, Pashchenko V P et al J. Exp. Theor. Phys. 124 (1) 100 (2017)
  47. Batdalov A B, Gamzatov A G et al Phys. Solid State 59 (9) 1879 (2017)
  48. Ovsyannikov G A, Kislinskii Yu V et al J. Exp. Theor. Phys. 124 (4) 628 (2017)
  49. Streltsov S V, Khomskii D I Uspekhi Fizicheskikh Nauk 187 (11) 1205 (2017) [Streltsov S V, Khomskii D I Phys.-Usp. 60 (11) 1121 (2017)]
  50. Liedienov N A, Pashchenko A V et al Low Temperature Physics 43 (9) 1076 (2017)
  51. Germov A, Trokiner A et al Phys. Rev. B 96 (10) (2017)
  52. Steblevskaya N I, Belobeletskaya M V et al Russ. J. Inorg. Chem. 61 (7) 880 (2016)
  53. Isaev L, Schachenmayer J, Rey A  M Phys. Rev. Lett. 117 (13) (2016)
  54. Bannikov V V Materials Chemistry And Physics 171 119 (2016)
  55. Liedienov N A, Pashchenko A V et al Low Temperature Physics 42 (12) 1102 (2016)
  56. Ivliev M P, Sakhnenko V P Phys. Solid State 58 (12) 2427 (2016)
  57. Fetisova M V, Martynova O A, Gasumyants V E J. Phys.: Conf. Ser. 690 012007 (2016)
  58. Dovgii V T, Linnik A I et al Journal Of Magnetism And Magnetic Materials 408 89 (2016)
  59. Phan V-N, Ninh Q-H, Tran M-T Phys. Rev. B 93 (16) (2016)
  60. Fetisova M V, Martynova O A, Gasumyants V E J. Phys.: Conf. Ser. 741 012205 (2016)
  61. Spurgeon S R, Balachandran P V et al Nat Commun 6 (1) (2015)
  62. Terzic J, Wang J C et al Phys. Rev. B 91 (23) (2015)
  63. Germov A Yu, Mikhalev K N et al Jetp Lett. 102 (11) 727 (2015)
  64. Estemirova S Kh, Balakirev V F et al Glass Phys Chem 41 (2) 224 (2015)
  65. Dovgii V T, Linnik A I et al Phys. Solid State 57 (12) 2404 (2015)
  66. Makni-Chakroun J, Cheikhrouhou-Koubaa W et al Journal Of Alloys And Compounds 650 421 (2015)
  67. Meza G A, Riera J A Phys. Rev. B 90 (8) (2014)
  68. Krivoruchko V N Low Temperature Physics 40 (7) 586 (2014)
  69. Ayadi F, Cheikhrouhou-Koubaa W et al Materials Chemistry And Physics 145 (1-2) 56 (2014)
  70. Sukhorukov Yu P, Telegin A V et al Journal Of Magnetism And Magnetic Materials 367 53 (2014)
  71. Pashchenko A V, Pashchenko V P et al Low Temperature Physics 40 (8) 717 (2014)
  72. Pashchenko A V, Pashchenko V P et al Phys. Solid State 56 (5) 955 (2014)
  73. Pashchenko A V, Pashchenko V P et al Acta Materialia 70 218 (2014)
  74. Mikhalev K N, Volkova Z N, Gerashchenko A P Phys. Metals Metallogr. 115 (11) 1139 (2014)
  75. Greben’kova Yu E, Sokolov A E et al Jetp Lett. 98 (8) 460 (2013)
  76. Dovgii V T Funct.Mater. 20 (4) 424 (2013)
  77. Singh R Journal Of Magnetism And Magnetic Materials 346 58 (2013)
  78. Greben’kova Yu E, Sokolov A E et al Phys. Solid State 55 (4) 842 (2013)
  79. Neifeld E A, Ugryumova N A et al Phys. Solid State 55 (11) 2345 (2013)
  80. Demidov V V, Ovsyannikov G A et al Journal of Applied Physics 113 (16) (2013)
  81. Krivoruchko V N, Marchenko M A J. Exp. Theor. Phys. 115 (1) 125 (2012)
  82. Petrzhik A M, Demidov V V et al J. Exp. Theor. Phys. 115 (5) 876 (2012)
  83. Orel E S Low Temperature Physics 38 (7) 669 (2012)
  84. Chiang Y N, Dzyuba M O et al Low Temperature Physics 38 (1) 59 (2012)
  85. Gavrichkov V A, Ovchinnikov S G et al J. Exp. Theor. Phys. 112 (5) 860 (2011)
  86. Dovgii V T, Linnik A I et al Inorg Mater 47 (11) 1253 (2011)
  87. Isupova L A, Gerasimov E Yu et al Kinet Catal 52 (1) 104 (2011)
  88. Petrzhik A M, Ovsyannikov G A et al J. Exp. Theor. Phys. 112 (6) 1042 (2011)
  89. Ovsyannikov G A, Constantinian K Y et al Supercond. Sci. Technol. 24 (5) 055012 (2011)
  90. Gavrichkov V A, Ovchinnikov S G et al J. Phys.: Conf. Ser. 200 (1) 012046 (2010)
  91. Chiang Yu N, Dzyuba M O et al JMP 01 (05) 319 (2010)
  92. Chezhina N V, Fedorova A V Russ J Gen Chem 80 (5) 909 (2010)
  93. Prylypko S Yu, Akimov G Ya et al Tech. Phys. 55 (7) 1056 (2010)
  94. Irkhin V Yu Phys. Metals Metallogr. 110 (7) 602 (2010)
  95. Borisenko I V, Ovsyannikov G A Phys. Solid State 51 (2) 309 (2009)
  96. Orlova T S, Laval J Y et al Phys. Solid State 51 (1) 99 (2009)
  97. Gerasimov E Yu, Zaikovskii V I et al J. Synch. Investig. 3 (5) 756 (2009)
  98. Chiang Yu N, Dzyuba M O et al Low Temperature Physics 35 (11) 876 (2009)
  99. Khutsishvili K O, Fokina N P J. Exp. Theor. Phys. 109 (5) 794 (2009)
  100. Ivliev M P Phys. Solid State 51 (8) 1561 (2009)
  101. Ivanova N B, Ovchinnikov S G et al Uspekhi Fizicheskikh Nauk 179 (8) 837 (2009)
  102. Ovsyannikov G A, Petrzhik A M et al J. Exp. Theor. Phys. 108 (1) 48 (2009)
  103. Isupova L A, Gerasimov E Yu et al Kinet Catal 50 (6) 886 (2009)
  104. Dmitriev V M, Khlybov E P et al Low Temperature Physics 34 (9) 757 (2008)
  105. Kuzmin E V Low Temperature Physics 34 (2) 123 (2008)
  106. Izyumov Yu A, Kurmaev E Z Uspekhi Fizicheskikh Nauk 178 (1) 25 (2008)
  107. Kuz’min E V, Polulyakh S N et al Phys. Solid State 50 (10) 1918 (2008)
  108. Manukyan A S, Varderesyan P A et al J. Contemp. Phys. 43 (4) 190 (2008)
  109. Zinenko V I, Pavlovskiĭ M S Phys. Solid State 49 (9) 1749 (2007)
  110. Gamzatov A G, Abdulvagidov Sh B et al Jetp Lett. 86 (5) 340 (2007)
  111. Chukalkin Yu G, Teplykh A E Phys. Metals Metallogr. 104 (1) 99 (2007)
  112. Kuvandikov O K, Shakarov Kh O et al J. Commun. Technol. Electron. 52 (9) 1058 (2007)
  113. Nadeev A N, Tsybulya S V et al J Struct Chem 48 (6) 1105 (2007)
  114. Chukalkin Yu, Teplykh A, Goshchitskii B Physica Rapid Research Ltrs 1 (1) (2007)
  115. Aplesnin S S, Piskunova N I Phys. Metals Metallogr. 104 (1) 13 (2007)
  116. Orlova T S, Laval J -Y et al Phys. Solid State 48 (11) 2115 (2006)
  117. D’yachenko A I, Krivoruchko V N, Tarenkov V Yu Low Temperature Physics 32 (8) 824 (2006)
  118. Loktev V M, Turkowski V M Low Temperature Physics 32 (8) 802 (2006)
  119. Mikhalev K, Pogudin A et al Journal Of Magnetism And Magnetic Materials 300 (1) e118 (2006)
  120. Belinsky M I Chemical Physics 327 (1) 15 (2006)
  121. Koval’chuk G K, Gasumyants V É Phys. Solid State 48 (2) 303 (2006)
  122. Lekomtsev S A, Mikhalev K N et al J. Exp. Theor. Phys. 102 (4) 671 (2006)
  123. Chukalkin Yu G, Teplykh A E Phys. Solid State 48 (12) 2310 (2006)
  124. Cherkasov A N, Dmitrenko V Yu Tech. Phys. 51 (6) 740 (2006)
  125. Gavrichkov V A, Ovchinnikov S G, Yakimov L E J. Exp. Theor. Phys. 102 (6) 972 (2006)
  126. Sharoyan E G, Manukyan A S J. Porphyrins Phthalocyanines 09 (12) 846 (2005)
  127. Aplesnin S S, Ryabinkina L I et al Phys. Rev. B 71 (12) (2005)
  128. Goltsev A V Phys. Solid State 47 (11) 2102 (2005)
  129. Aplesnin S S Jetp Lett. 81 (2) 66 (2005)
  130. Sboychakov A O, Rakhmanov A L et al Phys. Rev. B 72 (1) (2005)
  131. Solin N I J. Exp. Theor. Phys. 101 (3) 535 (2005)
  132. Aplesnin S S, Petrakovskii G A et al Solid State Communications 129 (3) 195 (2004)
  133. Dunaevsky S M, Deriglazov V V Phys. Solid State 46 (3) 510 (2004)
  134. Bryksa V P Semicond. Phys. Quantum Electron. Optoelectron. 7 (2) 119 (2004)
  135. Tulina N A, Sirotkin V V Physica C: Superconductivity 400 (3-4) 105 (2004)
  136. Aplesnin S S, Ryabinkina L I et al Phys. Solid State 46 (11) 2067 (2004)
  137. Dunaevskii S M Phys. Solid State 46 (2) 193 (2004)
  138. Aplesnin S S J. Phys.: Condens. Matter 16 (32) 5907 (2004)
  139. Li Q, Ma X, Kou Zhi-qi Phys. Rev. B 69 (1) (2004)
  140. Asokan K, Jan J C et al J. Phys.: Condens. Matter 16 (21) 3791 (2004)
  141. Sboychakov A O, Rakhmanov A L et al Journal Of Magnetism And Magnetic Materials 258-259 296 (2003)
  142. Koroleva L I, Szymczak R Journal Of Physics And Chemistry Of Solids 64 (9-10) 1565 (2003)
  143. Abdulvagidov Sh B, Kamilov I K et al J. Exp. Theor. Phys. 96 (4) 757 (2003)
  144. Dovgij V T, Linnik A I et al Low Temperature Physics 29 (4) 285 (2003)
  145. Sboychakov A O, Rakhmanov A L et al J. Phys.: Condens. Matter 15 (10) 1705 (2003)
  146. Babushkina N A, Chistotina E A et al J. Phys.: Condens. Matter 15 (2) 259 (2003)
  147. Kogan E, Auslender M Phys. Rev. B 67 (13) (2003)
  148. PHAN VAN-NHAM, TRAN MINH-TIEN Mod. Phys. Lett. B 17 (01) 39 (2003)
  149. Misochko 1 O V, Kaidashev E M et al J. Exp. Theor. Phys. 97 (4) 788 (2003)
  150. Teplykh A E, Bogdanov S G et al Phys. Solid State 45 (12) 2328 (2003)
  151. Aliev A M, Abdulvagidov Sh B et al Phys. Solid State 45 (1) 130 (2003)
  152. Solin N I, Mashkautsan V V et al Jetp Lett. 77 (5) 230 (2003)
  153. Biernacki S W Phys. Rev. B 66 (9) (2002)
  154. Ryzhov V A, Lazuta A V et al J. Exp. Theor. Phys. 94 (3) 581 (2002)
  155. Erwin S C, Petukhov A G Phys. Rev. Lett. 89 (22) (2002)
  156. Abramovich A I, Koroleva L I, Michurin A V J. Exp. Theor. Phys. 95 (5) 917 (2002)
  157. Demin R, Koroleva L et al Physics Letters A 296 (2-3) 139 (2002)
  158. Sboychakov A O, Rakhmanov A L et al J. Exp. Theor. Phys. 95 (4) 753 (2002)
  159. Izyumov Yu A, Skryabin Yu N ChemInform 32 (47) (2001)
  160. Nossov A, Strobel P Jetp Lett. 74 (6) 340 (2001)
  161. Tulina N A, Zver’kov S A et al Europhys. Lett. 56 (6) 836 (2001)

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