Domain-wall interactions. II. High-order phases in the axial next-nearest-neighbor Ising model

Michael E. Fisher and Anthony M. Szpilka
Phys. Rev. B 36, 5343 – Published 1 October 1987
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Abstract

A general formalism recently introduced for the study of physical systems exhibiting uniaxial, spatially modulated commensurate phases is applied to the axial next-nearest-neighbor Ising (ANNNI) model in d>2 dimensions with arbitrary interlayer coordination numbers. Asymptotically exact low-temperature expressions for the domain-wall tension, and for the pair, triplet, and higher-order wall-wall interaction potentials characterizing the low-temperature phases, are calculated explicitly by a transfer-matrix method. The wall interaction potentials determine the phase diagram at low temperatures and reveal a new infinite sequence of mixed phases, 〈2k32k+13〉 (k=1,2,. . .). Some confusing discrepancies in earlier work are resolved and certain approximations are exhibited as limiting cases of the general results. The limit of infinite coordination numbers yields the exact low-temperature mean-field hase diagram, which, contrary to some speculations, is seen to be qualitatively correct in the low-temperature limit.

  • Received 6 April 1987

DOI:https://doi.org/10.1103/PhysRevB.36.5343

©1987 American Physical Society

Authors & Affiliations

Michael E. Fisher

  • Baker Laboratory, Cornell University, Ithaca, New York 14853

Anthony M. Szpilka

  • General Electric Company, Corporate Research and Development, P.O. Box 8, Schenectady, New York 12301

See Also

Domain-wall interactions. I. General features and phase diagrams for spatially modulated phases

Michael E. Fisher and Anthony M. Szpilka
Phys. Rev. B 36, 644 (1987)

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Issue

Vol. 36, Iss. 10 — 1 October 1987

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