Structural and magnetic characterization of CeTaO and YbTaO with two-dimensional pseudospin-1/2 triangular lattice
arXiv:2411.18045 · doi:10.1103/PhysRevB.110.174448
Abstract
Triangular lattice antiferromagnets are prototypes for frustrated magnetism and may potentially realize novel quantum magnetic states such as a quantum spin liquid ground state. A recent work suggests NdTaO with rare-earth triangular lattice is a quantum spin liquid candidate and highlights the large family of rare-earth heptatantalates as a framework for quantum magnetism investigation. In this paper, we report the structural and magnetic characterization of CeTaO and YbTaO. Both compounds are isostructural to NdTaO with no detectable structural disorder. For CeTaO, the crystal field energy levels and parameters are determined by inelastic neutron scattering measurements. Based on the crystal field result, the magnetic susceptibility data could be well fitted and explained, which reveals that CeTaO is a highly anisotropic Ising triangular-lattice antiferromagnet (/3) with very weak exchange interaction (J0.22~K). For YbTaO, millimeter sized single crystals could be grown. The anisotropic magnetization and electron spin resonance data show that YbTaO has a contrasting in-plane magnetic anisotropy with /0.67 similar as that of YbMgGaO. The above results indicate that CeTaO and YbTaO with pseudospin-1/2 ground states might either be quantum spin liquid candidate materials or find applications in adiabatic demagnetization refrigeration due to the weak exchange interaction.
10 pages, 7 figures
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