Issues

 / 

1988

 / 

August

  

Reviews of topical problems


Anharmonicity of mixed modes and giant acoustic nonlinearity of antiferromagnetics

,  a
a Wave Research Centre, A.M. Prokhorov General Physics Institute, Russian Academy of Sciences, ul. Vavilova 38, Moscow, 119991, Russian Federation

The results are presented of the ten-year development of the concepts of anharmonicity of the normal modes that describe the vibrations of a continuous medium having two or more mutually coupled subsystems. The results are discussed of experimental and theoretical studies of the anharmonicity of the magnetoelastic normal waves in antiferromagnetics having weak anisotropy and a large exchange field, such as $\alpha$ -Fe$_2$O$_3$, FeBO$_3$, etc. In these crystals the ``effective'' anharmonicity of the quasiacoustic branch of vibrations that arises from the magnetostrictive coupling of the elastic and spin subsystems is especially large--larger by a factor of 10$^3$ to 10$^4$ than that typical of a pure elastic medium. The corresponding effective moduli are controlled easily, and over a broad range, by a small magnetic field (0.1--2 kOe). The anomalously large (``giant'') magnitude of the acoustic nonlinearity has enabled observing many ultrasound analogs of the effects of nonlinear optics (frequency doubling of sound, stimulated combination scattering of sound by sound, etc.). Realization in the near future of other analogs--self-focusing of a sound wave, excitation of magnetoelastic solitons, etc., is expected.

Fulltext pdf (647 KB)
Fulltext is also available at DOI: 10.1070/PU1988v031n08ABEH004908
PACS: 75.80.+q, 72.55.+s, 75.50.Ee, 75.30.Ds, 75.30.Gw (all)
DOI: 10.1070/PU1988v031n08ABEH004908
URL: https://ufn.ru/en/articles/1988/8/b/
Citation: Ozhogin V I, Preobrazhenskii V L "Anharmonicity of mixed modes and giant acoustic nonlinearity of antiferromagnetics" Sov. Phys. Usp. 31 713–729 (1988)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Оригинал: Ожогин В И, Преображенский В Л «Ангармонизм смешанных мод и гигантская акустическая нелинейность антиферромагнетиков» УФН 155 593–621 (1988); DOI: 10.3367/UFNr.0155.198808b.0593

References (71) Cited by (92) ↓ Similar articles (20)

  1. Bogdanova T V, Meshcheryakov A A et al Applied Physics Letters 127 (14) (2025)
  2. Sukhorukova O S, Tarasenko A S et al Fizika Metallov I Metallovedenie 125 (4) 467 (2024) [Sukhorukova O S, Tarasenko A S et al Phys. Metals Metallogr. 125 (4) 419 (2024)]
  3. Gabrielyan D A, Volkov D A et al J. Phys. D: Appl. Phys. 57 (30) 305003 (2024)
  4. Gulyaev Yu V, Sukhorukova O S et al Doklady Rossijskoj Akademii Nauk. Fizika, Tehničeskie Nauki 514 (1) 83 (2024)
  5. Fetisov Y K, Srinivasan G Journal of Applied Physics 135 (2) (2024)
  6. Metzger T W J, Grishunin K A et al Nat Commun 15 (1) (2024)
  7. Gabrielyan D, Volkov D et al Journal of Applied Physics 136 (8) (2024)
  8. Bogdanova T V, Meshcheryakov A A et al Applied Physics Letters 124 (9) (2024)
  9. Burdin D A, Chashin D V et al Sensors 23 (13) 5901 (2023)
  10. Gulyaev Yu V, Sukhorukova O S et al Dokl. Phys. 67 (8) 223 (2022)
  11. Xi Q, Aiyiti A et al Phys. Rev. B 104 (24) (2021)
  12. Safonov V L, Bas D A et al IEEE Access 9 80847 (2021)
  13. Tarasenko S V, Shavrov V G Jetp Lett. 113 (7) 477 (2021)
  14. Migachev S A, Kurkin M I Phys. Solid State 63 (2) 261 (2021)
  15. Kabychenkov A F, Lisovskii F V J. Commun. Technol. Electron. 66 (1) 76 (2021)
  16. Hortensius J R, Afanasiev D et al Nat. Phys. 17 (9) 1001 (2021)
  17. Moshkin V V, Preobrazhensky V L Dokl. Phys. 66 (7) 195 (2021)
  18. Safonov V L, McConney M E, Page M R IEEE Trans. Magn. 56 (3) 1 (2020)
  19. Brataas A, van Wees B et al Physics Reports 885 1 (2020)
  20. Burdin D A, Chashin D V et al Phys. Rev. Applied 13 (5) (2020)
  21. Popov M, Liu Y et al Phys. Rev. Applied 14 (3) (2020)
  22. Sukhorukova O S, Tarasenko A S et al Jetp Lett. 112 (7) 420 (2020)
  23. Andrienko A V, Safonov V L Applied Physics Letters 115 (1) (2019)
  24. Fetisov L Y, Burdin D A et al J. Phys. D: Appl. Phys. 51 (15) 154003 (2018)
  25. Nonequilibrium Magnons 1 (2012) p. 179
  26. Esipov I B Uspekhi Fizicheskikh Nauk 181 (11) 1228 (2011)
  27. Migachev S A, Sadykov M F et al Phys. Solid State 53 (3) 485 (2011)
  28. Gulyaev Yu V, Tarasenko S V, Shavrov V G Uspekhi Fizicheskikh Nauk 181 (6) 595 (2011)
  29. Karpuk M M, Kostyuk D A et al Phys. Metals Metallogr. 110 (2) 131 (2010)
  30. Migachev S A, Sadykov M F, Shakirzyanov M M Jetp Lett. 91 (7) 344 (2010)
  31. Strugatsky M B, Skibinsky K M Phys. Solid State 51 (6) 1172 (2009)
  32. Zhukov E A, Kuz’menko A P Tech. Phys. Lett. 34 (2) 163 (2008)
  33. Karpuk M M, Kostyuk D A et al Phys. Metals Metallogr. 106 (2) 115 (2008)
  34. Kuz’menko A P, Zhukov E A, Shcherbakov Yu I Tech. Phys. 53 (11) 1433 (2008)
  35. Tarasenko O S, Tarasenko S V, Yurchenko V M Crystallogr. Rep. 51 (3) 480 (2006)
  36. Tarasenko O S, Tarasenko S V, Yurchenko V M Crystallogr. Rep. 51 (2) 296 (2006)
  37. Karpuk M M, Kostyuk D A et al Acoust. Phys. 52 (1) 56 (2006)
  38. Kostyuk D A, Kuzavko Yu A, Shavrov V G Phys. Metals Metallogr. 101 (6) 524 (2006)
  39. Fetisov Yu K, Preobrazhenskii V L, Pernod P J. Commun. Technol. Electron. 51 (2) 218 (2006)
  40. Pleshakov I V Phys. Solid State 47 (9) 1692 (2005)
  41. Akhmadullin I Sh Phys. Solid State 47 (3) 523 (2005)
  42. Dorofeev D L, Pakhomov G V, Zon B A Phys. Rev. E 71 (2) (2005)
  43. Akhmadullin I Sh, Migachev S A et al Phys. Solid State 46 (2) 312 (2004)
  44. Bespyatykh Yu I, Dikshtein I E et al Phys. Rev. B 68 (14) (2003)
  45. Bespyatykh Yu I, Dikshtein I E et al Phys. Solid State 45 (2) 311 (2003)
  46. Mitsui T, Imai Ya, Kikuta S Nuclear Instruments And Methods In Physics Research Section B: Beam Interactions With Materials And Atoms 199 75 (2003)
  47. Kryuchkov S V, Fedorov É G Opt. Spectrosc. 94 (2) 225 (2003)
  48. Tarasenko S V Opt. Spectrosc. 94 (6) 934 (2003)
  49. Kryuchkov S V, Fedorov É G Semiconductors 36 (3) 307 (2002)
  50. Tarasenko S V J. Exp. Theor. Phys. 94 (3) 568 (2002)
  51. Turov E A, Mirsaev I F, Nikolaev V V Uspekhi Fizicheskikh Nauk 172 (2) 193 (2002)
  52. Ishihara K, Mino M et al EPR in the 21st Century (2002) p. 89
  53. Tarasenko S V Opt. Spectrosc. 90 (2) 222 (2001)
  54. Tarasenko S V Phys. Solid State 43 (8) 1488 (2001)
  55. Tarasenko S V Low Temperature Physics 27 (1) 40 (2001)
  56. Andrienko A V J. Exp. Theor. Phys. 90 (3) 508 (2000)
  57. Bespyatykh Yu I, Dikshtein I E Journal Of Magnetism And Magnetic Materials 220 (2-3) 214 (2000)
  58. Bogdanova Kh G, Leont’ev V E et al Phys. Solid State 42 (3) 503 (2000)
  59. Tarasenko S V Phys. Solid State 42 (4) 712 (2000)
  60. Vilkov E A, Shavrov V G, Shevyakhov N S Phys. Solid State 42 (6) 1081 (2000)
  61. Zhang Q, Mino M et al J. Phys. Soc. Jpn. 69 (1) 41 (2000)
  62. Bogdanova Kh G, Golenishchev-Kutuzov V A et al J. Exp. Theor. Phys. 88 (5) 947 (1999)
  63. Buchel’nikov V D, Dan’shin N K et al Uspekhi Fizicheskikh Nauk 169 (10) 1049 (1999)
  64. Bogdanova Kh G, Golenishchev-Kutuzova V A et al Phys. Solid State 41 (2) 265 (1999)
  65. Kvardakov V V, Pepy G, Somenkov V A Physica B: Condensed Matter 262 (3-4) 262 (1999)
  66. Matsouli I, Pernot E et al J. Phys. D: Appl. Phys. 32 (10A) A104 (1999)
  67. Tarasenko S V Low Temperature Physics 24 (3) 164 (1998)
  68. Tarasenko S V Phys. Solid State 40 (2) 272 (1998)
  69. Bogdanova Kh G, Golenishev-Kutuzov V A et al Appl. Magn. Reson. 14 (4) 583 (1998)
  70. Bogdan M M, Slyozova Z V Frontiers in Magnetism of Reduced Dimension Systems Chapter 15 (1998) p. 323
  71. Matsouli I, Kvardakov V V et al MRS Proc. 524 (1998)
  72. Matsouli I, Kvardakov V et al J. Phys. D: Appl. Phys. 31 (12) 1478 (1998)
  73. Mirsaev I F Phys. Solid State 40 (11) 1884 (1998)
  74. Gulyaev Yu V, Dikshtein I E, Shavrov V G Uspekhi Fizicheskikh Nauk 167 (7) 735 (1997) [Gulyaev Yu V, Dikshtein I E, Shavrov V G Phys.-Usp. 40 (7) 701 (1997)]
  75. Bogdanova Kh G, Golenishchev-Kutuzov V A et al J. Exp. Theor. Phys. 85 (5) 1001 (1997)
  76. Safonov V L, Loaiza P M, Svistov L E Journal Of Magnetism And Magnetic Materials 173 (1-2) 43 (1997)
  77. Mirsaev I F Phys. Solid State 39 (8) 1271 (1997)
  78. Preobrazhensky V, Pernod P Journal of Applied Physics 81 (8) 5709 (1997)
  79. Kvardakov V V, Somenkov V A, Pepy G Physica B: Condensed Matter 241-243 736 (1997)
  80. Turov E A Jetp Lett. 65 (4) 337 (1997)
  81. Dikshtein I E, Suck S S-H Phys. Rev. B 53 (22) 14957 (1996)
  82. Menshenin V V, Mirsaev I F, Turov E A Journal Of Magnetism And Magnetic Materials 140-144 1739 (1995)
  83. Turov E A Journal Of Magnetism And Magnetic Materials 140-144 1737 (1995)
  84. Akhiezer A I, Aleksin V F, Khodusov V D Low Temperature Physics 20 (12) 939 (1994)
  85. Svistov L E, Safonov V L et al J. Phys.: Condens. Matter 6 (39) 8051 (1994)
  86. Andrienko A V, Poddyakov L V Solid State Communications 89 (11) 907 (1994)
  87. Turov E A Solid State Communications 87 (12) 1137 (1993)
  88. Dhilsha K R, Rama R K V S Journal of Applied Physics 73 (3) 1380 (1993)
  89. Chetkin M V, Lykov V V Journal Of Magnetism And Magnetic Materials 103 (3) 325 (1992)
  90. Belyaeva O Yu, Zarembo L K, Karpachev S N Uspekhi Fizicheskikh Nauk 162 (02) 107 (1992)
  91. Ozhogin V I, Preobrazhenskii V L Journal Of Magnetism And Magnetic Materials 100 (1-3) 544 (1991)
  92. Ozhogin V I, Preobrazhenskii V L Journal Of Magnetism And Magnetic Materials 90-91 191 (1990)

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