A one-third magnetization plateau phase as evidence for the Kitaev interaction in a honeycomb-lattice antiferromagnet

凝聚态物理 挫折感 物理 反铁磁性 磁化 高原(数学) 蜂巢 格子(音乐) 相(物质) 磁场 量子力学 材料科学 复合材料 声学 数学 数学分析
作者
Yanyan Shangguan,Song Bao,Zhao-Yang Dong,Ning Xi,Yipeng Gao,Zhen Ma,Wei Wang,Zhongyuan Qi,Shuai Zhang,Zhentao Huang,Junbo Liao,Xiaoxue Zhao,Bo Zhang,Shu-Fan Cheng,Hao Xu,Dehong Yu,Richard A. Mole,Naoki Murai,Seiko Ohira‐Kawamura,Lunhua He,Jiazheng Hao,Qing‐Bo Yan,Fengqi Song,Wei Li,Shun-Li Yu,Jian-Xin Li,Jinsheng Wen
出处
期刊:Nature Physics [Springer Nature]
卷期号:19 (12): 1883-1889 被引量:13
标识
DOI:10.1038/s41567-023-02212-2
摘要

The magnetization of a quantum magnet can be pinned at a fraction of its saturated value by collective effects. One example of such a plateau phase is found in spin-1/2 triangular-lattice antiferromagnets. They feature strong geometrical frustration and the plateau phase therein is often interpreted as arising from an order-by-disorder mechanism driven by quantum fluctuations. Here we observe a one-third magnetization plateau under an applied magnetic field in the spin-1 antiferromagnet Na3Ni2BiO6 with a honeycomb lattice, which, with conventional magnetic interactions, would not be geometrically frustrated. Based on our elastic neutron scattering measurements, we propose the spin structure of the plateau phase to be an unusual partial spin-flop ferrimagnetic order. Our theoretical calculations indicate that bond-anisotropic Kitaev interactions are the source of frustration that produces the plateau. These results suggest that Kitaev interactions provide a different route to frustration and phases driven by quantum fluctuations in high-spin magnets. Na3Ni2BiO6 with a honeycomb lattice is found to host a one-third magnetization plateau phase signifying frustrated interactions and indicates that Kitaev interactions can be realized in high-spin magnets.
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