Paramagnetic resonance studies of phase transitions in condensed materials
The use of electron paramagnetic resonance (EPR) as a tool to study various kinds of phase transitions in condensed materials is discussed. The subject is reviewed by considering representative examples of studies in the different kinds of phase transitions. Structural phase transitions in solids, d...
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Published in | Phase transitions Vol. 5; no. 2; pp. 81 - 137 |
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Format | Journal Article |
Language | English |
Published |
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Taylor & Francis Group
01.07.1985
Taylor and Francis |
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ISSN | 0141-1594 1029-0338 |
DOI | 10.1080/01411598508219149 |
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Abstract | The use of electron paramagnetic resonance (EPR) as a tool to study various kinds of phase transitions in condensed materials is discussed. The subject is reviewed by considering representative examples of studies in the different kinds of phase transitions. Structural phase transitions in solids, dynamics of formation of Slater configurations in KDP type ferroelectrics, temperature dependence of ordering in liquid crystals, studies of the dynamics of chain motion in glass to rubber transitions in polymer systems as well as magnetic transitions are discussed. |
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AbstractList | The use of electron paramagnetic resonance (EPR) as a tool to study various kinds of phase transitions in condensed materials is discussed. The subject is reviewed by considering representative examples of studies in the different kinds of phase transitions. Structural phase transitions in solids, dynamics of formation of Slater configurations in KDP type ferroelectrics, temperature dependence of ordering in liquid crystals, studies of the dynamics of chain motion in glass to rubber transitions in polymer systems as well as magnetic transitions are discussed. |
Author | Owens, F. J. |
Author_xml | – sequence: 1 givenname: F. J. surname: Owens fullname: Owens, F. J. organization: Energetic Materials Laboratory. Armament Research and Development Center |
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Keywords | Liquid state Commensurate incommensurate transformation Impurity Polymer Transition metal Review Liquid crystals Strontium Titanates Solidification Magnetic transition Ferroelectric transition Glass transition Solid state Sodium Azides Phase transformation Potassium Dihydrogenphosphates Electron paramagnetic resonance Hydrogen bond |
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References | Müller K. A. (CIT0044) 1972; 29 Owens F. J. (CIT0054) 1977; 79 Müller K. A. (CIT0046) 1964; 135 Kivelson D. (CIT0029) 1957; 27 Gordon R. (CIT0020) 1972 Blinc R. (CIT0008) 1979 Griffith O. H. (CIT0021) 1965; 43 Burns G. (CIT0011) 1961; 123 Waplak S. (CIT0069) 1981; 106 Aghdaee S. R. (CIT0002) 1983; 79 Müller K. A. (CIT0043) 1976 Nagata K. (CIT0047) 1972; 32 Truesdale R. D. (CIT0063) 1983; 27 Owens F. J. (CIT0055) 1977; 46 Pflster G. (CIT0058) 1969; 36 Owens F. J. (CIT0057) 1979; 29 Kuznetsov A. N. (CIT0032) 1971; 12 Owens F. J. (CIT0053) 1977; 34 Genin D. J. (CIT0018) 1968; 167 Goldman S. A. (CIT0019) 1972; 76 Müller K. A. (CIT0041) 1971 Abragram A. (CIT0001) 1951; 205 Walsh W. M. (CIT0070) 1959; 114 Von Waldkirch T. (CIT0068) 1973; 7 Carrington A. (CIT0012) 1964; 8 Owens F. J. (CIT0056) 1979 Fryburg G. C. (CIT0016) 1972; 16 Gasparous H. (CIT0017) 1971; 272 Veksli Z. (CIT0067) 1977; 10 Holuj F. (CIT0023) 1974; 9 Kobayashi T. (CIT0030) 1973; 35 Ajiro Y. (CIT0003) 1975; 39 Landau L. D. (CIT0033) 1958 Mori H. (CIT0040) 1962; 28 Chicault C. (CIT0013) 1977; 38 Müller K. A. (CIT0045) 1976; 36 Nordio P. L. (CIT0048) 1979 Okamura T. (CIT0049) 1951; 82 Hyde J. S. (CIT0024) 1972; 16 Bulkin B. J. (CIT0010) 1971; 54 Maier W. (CIT0036) 1960; 15 Oshima K. (CIT0050) 1976; 41 Gross S. C. (CIT0022) 1971; 9 Luckhurst G. R. (CIT0035) 1972; 19 Buchachenko A. L. (CIT0009) 1974 Iqbal Z. (CIT0026) 1974; 17 Iqbal Z. (CIT0025) 1973; 59 Robinson B. H. (CIT0062) 1974; 29 Tazuke Y. (CIT0065) 1971; 30 Mori H. (CIT0039) 1963; 30 Bleaney B. (CIT0005) 1951; 42 Cochran W. (CIT0015) 1960; 9 Owens F. J. (CIT0052) 1975; 35 de Jongh L. J. (CIT0028) 1972; 58 Kumler P. L. (CIT0031) 1976; 9 Raich J. C. (CIT0061) 1979; 70 Iqbal Z. (CIT0027) 1979; 67 Williams D. E. (CIT0072) 1966; 88 Blinc R. (CIT0007) 1974 Mason R. P. (CIT0037) 1974; 78 Wangsness R. K. (CIT0071) 1950; 79 Poole C. P. (CIT0059) 1971 Tazuke Y. (CIT0064) 1975; 38 Luckhurst G. R. (CIT0034) 1972 Maxwell L. R. (CIT0038) 1953; 25 Blinc R. (CIT0006) 1967; 159 Toyota E. (CIT0066) 1971; 30 O'Reilly D. E. (CIT0051) 1965; 43 Cochran W. (CIT0014) 1973 Müller K. A. (CIT0042) 1976 Berman A. (CIT0004) 1974 Rabold G. P. (CIT0060) 1969; 1 |
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Snippet | The use of electron paramagnetic resonance (EPR) as a tool to study various kinds of phase transitions in condensed materials is discussed. The subject is... |
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SubjectTerms | Condensed matter: electronic structure, electrical, magnetic, and optical properties Electron paramagnetic resonance and relaxation Exact sciences and technology Magnetic resonances and relaxations in condensed matter, mössbauer effect Physics |
Title | Paramagnetic resonance studies of phase transitions in condensed materials |
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