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Landau Model for Uniaxial Systems with Complex Order Parameter (CROSBI ID 83178)

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Latković, Mladen ; Bjeliš, Aleksa Landau Model for Uniaxial Systems with Complex Order Parameter // Physical review. B, Condensed matter and materials physics, 58 (1998), 17; 11273-11284. doi: 10.1103/PhysRevB.58.11273

Podaci o odgovornosti

Latković, Mladen ; Bjeliš, Aleksa

engleski

Landau Model for Uniaxial Systems with Complex Order Parameter

We study the Landau model for uniaxial incommensurate-commensurate systems of the class I by keeping Umklapp terms of third and fourth order in the expansion of the free energy. It applies to systems in which the soft-mode minimum lies between the corresponding commensurate wave numbers. The minimization of the Landau functional leads to the sine-Gordon equation with two nonlinear terms, equivalent to the equation of motion for the well-known classical mechanical problem of two mixing resonances. We calculate the average free energies forperiodic, quasiperiodic, and chaotic solutions of this equation, and show that in the regime of finite strengths of Umklapp terms only periodic solutions are absolute minima of the free energy, so that the phase diagram contains only commensurate configurations. The phase transitions between neighboring configurations are of thefirst order, and the wave number of ordering goes through a harmless staircase with a finite number of steps. These results are the basis for the interpretation of phase diagrams for some materials from the class I of incommensurate- -commensurate systems, in particular of those for A2BX4 and BCCD compounds. Also, we argue that chaotic barriers which separate metastable periodic solutions represent an intrinsic mechanism for observed memory effects and thermal hystereses.

commensurate modulation ; uniaxial systems ; nonintegrability ; harmless staircase

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Podaci o izdanju

58 (17)

1998.

11273-11284

objavljeno

1098-0121

1550-235X

10.1103/PhysRevB.58.11273

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