4.6 Article

Magnetic structure in the spin liquid Tb2Ti2O7 induced by a [111] magnetic field: Search for a magnetization plateau

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PHYSICAL REVIEW B
卷 88, 期 18, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.88.184428

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We have studied the field-induced magnetic structures of Tb2Ti2O7 pyrochlore by single-crystal neutron diffraction under a field applied along the [111] axis, up to H = 12 T and down to T = 40 mK. We refined the magnetic structures with k = 0 propagation vector by performing a symmetry analysis in the space group R3m, reducing the number of free parameters to three only. The Tb moments gradually reorient towards the field direction, keeping close to a 3-in, 1-out/1-in, 3-outspin structure (magnetic space group R 3 m') in the whole measured field range 0.05-12 T. Our results rule out the all-in/all-outstructure previously proposed and do not support the existence of a magnetization plateau. We perform a quantitative comparison with mean-field calculations and we propose the presence of a low-temperature dynamic symmetry breaking of the local trigonal symmetry, akin to a dynamic Jahn-Teller effect, i.e., preserving the overall cubic symmetry. We discuss the possible origin of this off-diagonalmixing term in the crystal field Hamiltonian in terms of quadrupole-quadrupole interaction or magnetoelastic effects.

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