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Field theory of scaling lattice models. The Potts antiferromagnet

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arxiv hep-th/0110181 v1 pith:VRDI5XW5 submitted 2001-10-19 hep-th cond-mat

classification hep-thcond-mat
keywords fieldlatticescalingtheoryantiferromagnetantiferromagneticbehaviourdescribing
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In contrast to what happens for ferromagnets, the lattice structure participates in a crucial way to determine existence and type of critical behaviour in antiferromagnetic systems. It is an interesting question to investigate how the memory of the lattice survives in the field theory describing a scaling antiferromagnet. We discuss this issue for the square lattice three-state Potts model, whose scaling limit as T->0 is argued to be described exactly by the sine-Gordon field theory at a specific value of the coupling. The solution of the scaling ferromagnetic case is recalled for comparison. The field theory describing the crossover from antiferromagnetic to ferromagnetic behaviour is also introduced.

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  1. The "not-A", RSPT and Potts phases in an $S_3$-invariant chain

    cond-mat.stat-mech 2019-08 accept novelty 8.0 of 10

    A two-parameter S3-invariant spin chain has four gapped phases, including a new 'not-A' phase and a representation symmetry-protected topological phase, with all transitions in the three-state Potts universality class.

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