Introducing the monoclinic polymorph of the Kitaev magnet NaCoTeO
arXiv:2305.10484 · doi:10.1103/PhysRevB.108.064405
Abstract
Recent theoretical studies have suggested that the low-energy Hamiltonian of honeycomb cobaltate systems could be dominated by anisotropic Kitaev interactions. Motivated by the theory, a honeycomb layered material NaCoTeO with a hexagonal unit cell has been studied and found to exhibit antiferromagnetic (AFM) ordering at 27 K with two spin reorientation transitions at 15 and 5 K. Here we report a monoclinic polymorph of NaCoTeO, also with honeycomb layered structure but with a single AFM transition at 9.6 K and without spin reorientation transitions at lower temperatures. Using neutron diffraction, we identify an in-plane zigzag AFM order in the ground-state with the spins canted out of the honeycomb planes and ferromagnetically coupled between them. The zigzag order is suppressed by a magnetic field of 6 T.
7 Figures, 3 tables
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Cited by in corpus (8)
- Easy-plane multi- magnetic ground state of NaCoSbO
- Comparative Raman Scattering Study of Crystal Field Excitations in Co-based Quantum Magnets
- Robust triple-q magnetic order with trainable spin vorticity in NaCoTeO
- Signatures of a Quantum Critical Endpoint in the Kitaev Candidate NaCoTeO
- On the multi- characteristics of magnetic ground states of honeycomb cobalt oxides
- Signatures of Floquet Engineering in the proximal Kitaev Quantum Spin Liquid HLiIrO by tr-RIXS
- Investigating structure and physical properties of quaternary layered transition metal oxide Na2Cu2TeO6
- Competing Interactions and the Effects of Uniaxial Out-of-plane Perturbations in the Honeycomb Antiferromagnet NaCoTeO