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New results on the dynamics of Rochelle salt crystals (a system with a ’double’ critical point)

 a,  b, ,
a Prokhorov General Physics Institute of the Russian Academy of Sciences, ul. Vavilova 38, Moscow, 119991, Russian Federation
b Kabardino-Balkarian State University, ul. Chernyshevskogo 173, Nalchik, 360004, Russian Federation
Fulltext pdf (91 KB)
Fulltext is also available at DOI: 10.1070/PU1986v029n06ABEH003423
PACS: 77.80.Bh, 77.84.−s (all)
DOI: 10.1070/PU1986v029n06ABEH003423
URL: https://ufn.ru/en/articles/1986/6/g/
Citation: Volkov A A, Kozlov G V, Kryukova E B, Sobyanin A A "New results on the dynamics of Rochelle salt crystals (a system with a 'double' critical point)" Sov. Phys. Usp. 29 574–575 (1986)
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Оригинал: Волков А А, Козлов Г В, Крюкова Е Б, Собянин А А «Новое о динамике кристаллов сегнетовой соли (системы с „двойной“ критической точкой)» УФН 149 331–334 (1986); DOI: 10.3367/UFNr.0149.198606g.0331

References (12) Cited by (4) Similar articles (20) ↓

  1. A.A. Sobyanin “General properties of systems with a ’double’ critical point29 570–572 (1986)
  2. I.L. Fabelinskii, S.V. Krivokhizha, L.L. Chaikov “Experimental studies of solutions with a ’double’ critical point29 572–573 (1986)
  3. G.V. Kozlov, A.A. Volkov, S.P. Lebedev “Dielectric spectroscopy of soft modes in ferroelectrics24 916–917 (1981)
  4. L.A. Fal’kovskii “The origin of electron spectra of group V semimetals29 577–579 (1986)
  5. B.A. Volkov, O.A. Pankratov “Electronic structure of quasicubic crystals: energy bands, dielectric properties, and defects in narrow-gap semiconductors.29 575–577 (1986)
  6. G.A. Smolenskii “Phase Transitions in Certain Magnetically Ordered and Ferroelectric Crystals17 446–446 (1974)
  7. G.A. Smolenskii, V.V. Lemanov “Hypersonic Waves in Crystals13 665–666 (1971)
  8. D.N. Klyshko, A.N. Penin “Quantum photometry using parametric scattering of light28 92–93 (1985)
  9. B.A. Volkov, O.A. Pankratov “Inverted contact in semiconductors—a new inhomogeneous structure with a twodimensional gas of zero-mass electrons29 579–581 (1986)
  10. U.Kh. Kopvillem, V.N. Osipov et alAnalogs of Electron Spin Echo in Ferroelectrics and Glasses14 802–803 (1972)
  11. V.I. Panov, A.A. Sobyanin, V.A. Khvostikov “Experimental investigation of superfluidity of helium II near the λ point26 545–546 (1983)
  12. L.N. Bulaevskii, V.L. Ginzburg et alMacroscopic theory of defect-free and defective superconductors with a small coherence length32 277–279 (1989)
  13. K.K. Rebane “Phononless lines in laser spectroscopy of molecules and crystals. 1. The phononless line — an optical analog of the Mössbauer line27 541–543 (1984)
  14. N.N. Sirota “Electron and Spin Density Distribution and the Physical Properties of Crystals15 851–852 (1973)
  15. G.A. Smolenskii “Magneto-optical and Radiospectroscopic Investigations of Magnetic and Dielectric Crystals14 542–543 (1972)
  16. A.A. Gorbatsevich, O.E. Omel’yanovskii et alMagnetoelectricity (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 20 January 2009)52 835–860 (2009)
  17. A.A. Mukhin, V.Yu. Ivanov et alTerahertz spectroscopy and the magnetoelectric properties of manganite-based multiferroics52 851–856 (2009)
  18. Kh.S. Bagdasarov, V.Ya. Khaimov-Mal’kov “New Procedures and Results of Synthesis of High-melting-point Single Crystals13 671–671 (1971)
  19. M.G. Shchepkin “Majorana neutrino and double beta decay29 1062–1063 (1986)
  20. B.I. Ostrovskii “Structure of liquid crystals30 737–738 (1987)

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