Spin and quadrupole correlations by three-spin interaction in the frustrated pyrochlore magnet TbTiO
arXiv:2109.08799 · doi:10.1103/PhysRevB.105.014439
Abstract
We have investigated the origin of the magnetic dipole correlations characterized by the modulation wave vector observed in the frustrated pyrochlore magnet TbTiO. This magnetic short-range order cannot be accounted for by adding further-neighbor exchange interactions to the nearest-neighbor pseudospin- Hamiltonian for quantum pyrochlore magnets. Using classical Monte Carlo simulation and quantum simulation based on thermally pure quantum (TPQ) states we have shown that the spin correlations with are induced at low temperatures by a three-spin interaction of a form , which is a correction to the Hamiltonian due to the low crystal-field excitation. Simulations using TPQ states have shown that the spin correlations coexist with electric quadrupole correlations () with . These results suggest that the putative quantum spin liquid state of TbTiO is located close to phase boundaries of the spin-ice, quadrupole-ordered, and magnetic-ordered states in the classical approximation, and that the three-spin interaction brings about a quantum disordered ground state with both spin and quadrupole correlations.
28 pages, 25 figures
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