2005
DOI: 10.1080/00150190590963219
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Spin Models With Different Types of Competing Interactions

Abstract: We consider a spin-glass model with an arbitrary range of competing interactions within two-particle cluster approximation for the free energy and within symmetric replica approach. We show that for the thermodynamic characteristics, the Gaussian approximation for distribution functions of cluster (short-range) fields can be used. For a simple proton-glass model with weak long-range interactions (linear approximation) we study the influence of the long-range interactions and random internal fields on the phase… Show more

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Cited by 5 publications
(8 citation statements)
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References 19 publications
(27 reference statements)
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“…From equations (42), (43) we derive expressions forφ (ω),q (ω) used to findη f f (ω) (40). For the sake of simplicity, in what follows we shall use an effective relaxation timeτ 0…”
Section: Relaxational Dynamics Of the Rb 1−x (Nh 4 ) X H 2 Po 4 Type mentioning
confidence: 99%
See 2 more Smart Citations
“…From equations (42), (43) we derive expressions forφ (ω),q (ω) used to findη f f (ω) (40). For the sake of simplicity, in what follows we shall use an effective relaxation timeτ 0…”
Section: Relaxational Dynamics Of the Rb 1−x (Nh 4 ) X H 2 Po 4 Type mentioning
confidence: 99%
“…In [40,41] a theory of static properties of model proton glasses with an arbitrary range of competing interactions was proposed. Thermodynamic properties of the model with essential short-range and weak long-range interactions were explored within the two-particle cluster approximation.…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…In [78][79][80][81] a theory of static characteristics of model proton glasses with an arbitrary range of competing interactions has been proposed. In [82,83] a similar approach has been used for the description of some thermodynamic characteristics and transverse dielectric permittivity of hydrogen bonded Rb 1−x (ND 4 ) x D 2 PO 4 and Rb 1−x (NH 4 ) x H 2 AsO 4 compounds, in which an essential role in the formation of energy levels is played by the proton short-range correlations.…”
Section: Theoretical Studies Of the Rbmentioning
confidence: 99%
“…They can be a 2D dipolar lattice gas, 15 a 2D dipolar Ising model without vacancies [16][17][18][19][20][21] and with random vacancies, 22 a 2D frustrated system, 23 a bidimensional fluid system, 24 a 2D quantum Heisenberg model, 25 a density anomaly, 26 a spin-glass state, 27 correlations in fluids, 28 compositional patterns on bulk-immiscible alloy films, 29 and a colloidal fluid. 30 Our work is also based on this method.…”
Section: -13mentioning
confidence: 99%