Large exchange bias and low temperature glassy state in frustrated triangular-lattice antiferromagnet BaNiIrO
arXiv:2106.11402 · doi:10.1103/PhysRevB.104.014401
Abstract
Here, we report both ac and dc magnetization, thermodynamic and electric properties of hexagonal BaNiIrO. The Ni (spin-1) forms layered triangular-lattice and interacts antiferromagnetically while Ir is believed to act as magnetic link between the layers. This complex magnetic interaction results in magnetic frustration leading to a spin-glass transition at 8.5 K. The observed magnetic relaxation and aging effect also confirms the nonequilibrium ground state. The system further shows large exchange bias which is tunable with cooling field. Below the Curie-Weiss temperature ( -29 K), the magnetic specific heat displays a broad hump and at low temperature follows dependence where both and show dependence on temperature and magnetic field. A sign change in magnetoresistace is observed which is due to an interplay among magnetic moment, field and spin-orbit coupling.
9 pages, 7 figures, Accepted for publication in Phys. Rev. B
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