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- W1409505897 abstract "The chapter aims for the following: first, to survey theoretical work on discrete spin models where competition in the Hamiltonian results in modulated ordering, and second, to discuss the relevance of such models to experimental systems. Two compounds typical of those that will be considered are cerium antimonide and silicon carbide. Cerium antimonide is an Ising ferromagnet, which locks into a large number of different modulated magnetic phases separated by first-order phase transitions. In silicon carbide, on the other hand, the modulation is structural; the close-packed stacking sequence of the component layers can form long period patterns. The canonical spin model that shows similar behavior is the axial next nearest- neighbor Ising, or ANNNI, model. The phase diagram of the ANNNI model contains series of commensurate and incommensurate modulated phases of arbitrarily long wavelength. These are stabilized by entropic effects, which dominate because of competition between short-range interactions. The chapter presents a discussion on the chiral clock model, in which a different mechanism, chiral interactions, provides the competition, which leads to modulated phases. The novel interface properties of this model are discussed." @default.
- W1409505897 created "2016-06-24" @default.
- W1409505897 creator A5009735478 @default.
- W1409505897 date "1988-01-01" @default.
- W1409505897 modified "2023-10-16" @default.
- W1409505897 title "The Theory and Application of Axial Ising Models" @default.
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- W1409505897 doi "https://doi.org/10.1016/s0081-1947(08)60379-3" @default.
- W1409505897 hasPublicationYear "1988" @default.
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