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arxiv: mtrl-th/9412002 · v1 · submitted 1994-12-02 · mtrl-th · cond-mat.mtrl-sci

Commensurate and modulated magnetic phases in orthorhombic A1C60

classification mtrl-th cond-mat.mtrl-sci
keywords phasescommensuratemodelmagnetica1c60equilibriumheisenbergising
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Competing magnetically ordered structures in polymerized orthorhombic A1C60 are studied. A mean-field theory for the equilibrium phases is developed using an Ising model and a classical Heisenberg model to describe the competition between inter- and intra-chain magnetic order in the solid. In the Ising model, the limiting commensurate one-dimensional and three-dimensional phases are separated by a commensurate three-sublattice state and by two sectors containing higher-order commensurate phases. For the Heisenberg model the quasi-1D phase is never the equilibrium state; instead the 3D commensurate phases exhibits a transition to a continuum of coplanar spiral magnetic phases.

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