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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 51, 1984 - Issue 3
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Original Articles

One dimensional hindered rotor model for order-disorder phase transitions in ammonium halide crystals

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Pages 731-759 | Received 23 May 1983, Accepted 18 Aug 1983, Published online: 22 Aug 2006

References

  • Carland , C.W. , Lushington , K.J. and Leung , R.C. 1979 . J. chem. Phys. , 71 : 3165 – 3165 .
  • Nagamiya , T. 1942 . Proc. Phys. Math. Japan , 24 : 137 – 137 . 1943, Ibid., 25, 540.
  • Yamada , Y. , Mori , M. and Noda , Y. 1972 . J. phys. Soc. Japan , 32 : 1565 – 1565 .
  • Yamada , Y. , Takatera , H. and Huber , D.L. 1974 . J. phys. Soc. Japan , 36 : 641 – 641 .
  • Hüller , A. and Kane , J.W. 1974 . J. chem. Phys. , 61 : 3599 – 3599 .
  • Hüller , A. 1972 . Z. Phys. , 254 : 456 – 456 .
  • Vaks , V.G. and Schneider , V.E. 1976 . Phys. Stat. Sol. (a) , 35 : 61 – 61 .
  • Vlasova , A.A. , Tornau , E.E. and Shneider , V.E. 1978 . Soviet Phys. Solid St. , 20 : 497 – 497 .
  • See Addendum in Hüller A. Z. Phys. 1972 254 456 456
  • Yamada , Y. , Noda , Y. , Axe , J.D. and Shirane , G. 1974 . Phys. Rev. B , 9 : 4429 – 4429 .
  • Couzi , M. , Denoyer , F. and Lambert , M. 1974 . J. Phys., Paris , 35 : 753 – 753 .
  • Yamada , Y. 1981 . J. phys. Soc. Japan , 50 : 2996 – 2996 .
  • Michel , K.H. and Naudts , J. 1978 . J. chem. Phys. , 68 : 216 – 216 .
  • Hüller , A. and Raich , J.C. 1982 . J. chem. Phys. , 77 : 2038 – 2038 .
  • Levy , H.A. and Peterson , S.W. 1953 . J. Am. chem. Soc. , 75 : 1536 – 1536 .
  • Bonilla , A. , Garland , C.W. and Schumaker , N.E. 1970 . Acta crystallogr. A , 26 : 156 – 156 .
  • Töpler , J. and Richter , D.R. 1978 . J. chem. Phys. , 69 : 3170 – 3170 .
  • Lechner , R.E. , Badurek , G. , Dianoux , A.J. , Hervet , H. and Volino , F. 1980 . J. chem. Phys. , 73 : 934 – 934 .
  • Hochheimer , H.D. , Spanner , E. and Strauch , D. 1976 . J. chem. Phys. , 64 : 1583 – 1583 .
  • Garland , C.W. , Leung , R.C. and Zahradnik , C. 1979 . J. chem. Phys. , 71 : 3158 – 3158 .
  • Lushington , K.J. and Garland , C.W. 1980 . J. chem. Phys. , 72 : 5752 – 5752 .
  • Hochheimer , H.D. and Dultz , W. 1974 . Solid St. Commun. , 14 : 475 – 475 .
  • Shand , M.L. , Hochheimer , H.D. and Walker , C.T. 1976 . Solid St. Commun. , 20 : 1043 – 1043 .
  • Garland , C.W. , Leung , R.C. and Missel , F.P. 1978 . Phys. Rev. B , 18 : 4848 – 4848 .
  • Heyns , A.M. , Hirsch , K.R. and Holzapfel , W.B. 1980 . J. chem. Phys. , 73 : 105 – 105 . 1979, Solid St. Commun. 29, 351.
  • Heyns , A.M. 1980 . J. Phys. Chem. Solids , 41 : 769 – 769 .
  • Yasuda , H. 1971 . Prog. theor. Phys. , 45 : 1361 – 1361 .
  • Yasuda , H. 1980 . J. chem. Phys. , 73 : 3722 – 3722 . 1981, Ibid., 74, 6531.
  • Yasuda , H. 1980 . Bull. Coll. Gen. Educ. Nagoya City Univ. Natural Sci. Sect. , 26 : 1 – 1 .
  • Maradudin , A.A. , Montroll , E.W. , Weiss , G.H. and Ipatova , I.P. 1971 . Theory of Lattice Dynamics in the Harmonic Approximation , second edition , Academic . Chap. II
  • Rose , M.E. 1957 . Elementary Theory of Angular Momentum , Wiley . Chap. 5
  • Yasuda , H. and Yamamoto , T. 1971 . Prog. theor. Phys. , 45 : 1458 – 1458 .
  • Yasuda , H. and Raich , J.C. 1982 . Molec. Phys. , 47 : 647 – 647 .
  • Garland , C.W. and Yarnell , C.F. 1966 . J. chem. Phys. , 44 : 1112 – 1112 .
  • Govindarajan , J. and Haridasan , T.M. 1970 . Indian J. Pure appl. Phys. , 8 : 376 – 376 .
  • DeRaedt , H. and DeRaedt , B. 1977 . Phys. Rev. B , 15 : 5379 – 5379 .
  • DeRaedt , B. and Michel , K.H. 1979 . Phys. Rev. B , 19 : 767 – 767 .
  • Bauhofer , W. , Genzel , L. and Jahn , I.R. 1974 . Phys. Stat. Sol. (6) , 63 : 465 – 465 .
  • Vaidya , S.N. and Kennedy , G.C. 1971 . J. Phys. Chem. Solids , 32 : 951 – 951 .
  • Yasuda , H. 1978 . J. low-temp. phys. , 31 : 223 – 223 .
  • Stevenson , R. 1961 . J. chem. Phys. , 34 : 1757 – 1757 . These triple point values and the P-T phase diagram depend on the values of the parameters δ and 4q, which are given in table 2 and are fixed in such a way that the calculated transition temperatures agree with the experimental ones on the basis of a mean field treatment. The present D →0 phase transitions are weakly first order [21] and the mean field theory applies only approximately. In such cases it is known that the transition temperatures predicted by mean field theory are significantly higher than the actual values. Naudts, J., and Mahanti, S. D., 1982, Phys. Rev. B, 25, 5875. In addition, shortcomings in the treatment of rotation-phonon coupling can lead to calculated transition temperatures much higher than the experimental ones even with realistic estimates of the forces active in the ammonium halides. In spite of these limitations, the present model reproduces the P-T diagram, including the triple point, reasonably well.

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