Magnetic phase diagram and spin Hamiltonian of antiferromagnet Cs₂CoI₄
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We report comprehensive thermodynamic and neutron scattering measurements on the $S$ = 3/2 antiferromagnet Cs$_2$CoI$_4$, a member of the thoroughly studied family of frustrated magnets Cs$_2MX_4$ ($M$ = Cu, Co, Ru, $X$ = Br, Cl, I, O). Unlike previously studied members, Cs$_2$CoI$_4$ undergoes a structural phase transition, for which we determine the low-temperature crystallographic structure. The resulting symmetry reduction strongly affects both the magnetic exchange interactions and single-ion anisotropy. Despite the large parameter space, we propose a minimal magnetic Hamiltonian that reasonably captures the observed excitation spectrum, analyzed using extended SU(4) linear spin-wave theory.
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Field evolution of the magnetic structure and spin Hamiltonian in Cs$_2$RuO$_4$
Neutron diffraction and spectroscopy confirm field evolution of magnetic structure and resolve spin Hamiltonian parameters in Cs2RuO4.
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