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Magnetic soft modes in the locally distorted triangular antiferromagnet alpha-CaCr2O4

arXiv:1206.1795 · doi:10.1103/PhysRevLett.109.127203

Abstract

In this paper we explore the phase diagram and excitations of a distorted triangular lattice antiferromagnet. The unique two-dimensional distortion considered here is very different from the 'isosceles'-type distortion that has been extensively investigated. We show that it is able to stabilize a 120° spin structure for a large range of exchange interaction values, while new structures are found for extreme distortions. A physical realization of this model is α-CaCr2O4 which has 120° structure but lies very close to the phase boundary. This is verified by inelastic neutron scattering which reveals unusual roton-like minima at reciprocal space points different from those corresponding to the magnetic order.

5 pages, 3 figures and lots of spin-waves