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muSR studies on the trimer-based quantum spin liquid candidates Ba4NbM3O12

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DataCite Commons2021-04-27 更新2025-04-16 收录
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https://data.isis.stfc.ac.uk/doi/STUDY/113599646/
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The recently discovered hexagonal perovskite Ba4NbM3O12 provides a new platform to investigate a quantum spin liquid (QSL) state, in which the magnetic building block M3O12 form a triangular layer via the non-magnetic NbO6 octahedra in the ab-plane. One of the series compounds, Ba4NbM3O12 (M=Ir, Rh) is considered as the promising QSL candidates, evidenced by the magnetic susceptibility and heat capacity measurements. In addition, it is revealed that the substitution of the M-site provides a pathway to control the spin-orbit coupling (SOC), leading to the tune of the magnetic ground state. Therefore, Ba4NbM3O12 (M=Ir, Rh) is an ideal system to investigate QSL physics as well as the effects of the SOC on the trimer-based triangular lattice, deserving in-depth studies to unveil the nature of the ground state and low-energy spin dynamics.
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ISIS Facility
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2021-04-27
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