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Positivity constraints for the Ising ferromagnetic model
33
Citations
14
References
1976
Year
MagnetismMagnetic PropertiesCritical Magnetic BehaviourEngineeringQuantum Lattice SystemPhysicsRealistic Regular LatticesNatural SciencesQuantum Field TheoryCondensed Matter PhysicsApplied PhysicsDisordered Quantum SystemPositivity ConstraintsLattice Field TheoryCritical PhenomenonUpper BoundsStatistical Field Theory
The consequences of the Lee and Yang representation (see Phys. Rev., vol.87, p.404, 410 (1952)) for a ferromagnetic Ising model are reviewed. Bounds for the Lee and Yang angle are given and the critical magnetic behaviour is analysed. A main result is that identities for the Mayer-Yvon coefficients are deduced, which lead to the expansion of the magnetization with respect to the variable (1-tanh2 beta H). This expansion appears to exhibit remarkable positivity properties and the corresponding coefficients are tabulated. A central role is played by the Bethe lattice which is completely analysed, since its coefficients seem to give upper bounds for the more realistic regular lattices.
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