Inelastic neutron scattering on Li₃Co₂SbO₆ is compared to linear spin wave theory to establish an extended Kitaev-Heisenberg model that identifies the material as a Kitaev A-type antiferromagnet.
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Magnetic fields applied to anisotropic Kitaev chains produce ordered phases with four-site, large-unit-cell, and six-site uniform-chirality periodicities, explained by an effective model containing transverse Ising, Dzyaloshinskii-Moriya, and further-neighbor Ising interactions.
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Inelastic Neutron Scattering of the layered Kitaev ferromagnet Li$_3$Co$_2$SbO$_6$
Inelastic neutron scattering on Li₃Co₂SbO₆ is compared to linear spin wave theory to establish an extended Kitaev-Heisenberg model that identifies the material as a Kitaev A-type antiferromagnet.
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Field-Induced Ordered Phases in Anisotropic Spin-1/2 Kitaev Chains
Magnetic fields applied to anisotropic Kitaev chains produce ordered phases with four-site, large-unit-cell, and six-site uniform-chirality periodicities, explained by an effective model containing transverse Ising, Dzyaloshinskii-Moriya, and further-neighbor Ising interactions.