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BaRE(SiO)(RE = Ho - Yb):一族基于稀土的蜂窝晶格磁体。

BaRE(SiO) (RE = Ho-Yb): A Family of Rare-Earth-Based Honeycomb-Lattice Magnets.

作者信息

Liu Andi, Song Fangyuan, Bu Huanpeng, Li Zhaohu, Ashtar Malik, Qin Yuqi, Liu Dingjun, Xia Zhengcai, Li Jingxin, Zhang Zhitao, Tong Wei, Guo Hanjie, Tian Zhaoming

机构信息

Wuhan National High Magnetic Field Center and School of Physics, Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.

Songshan Lake Materials Laboratory, Dongguan, Guangdong 523808, China.

出版信息

Inorg Chem. 2023 Aug 28;62(34):13867-13876. doi: 10.1021/acs.inorgchem.3c01693. Epub 2023 Aug 17.

Abstract

Rare-earth (RE)-based honeycomb-lattice materials with strong spin-orbit coupled = 1/2 moments have attracted great interest as a platform to realize the Kitaev quantum spin liquid (QSL) state. Herein, we report the discovery of a family of RE-based honeycomb-lattice magnets BaRE(SiO) (RE = Ho-Yb), which crystallize into the rhombohedral structure with the space group 3̅. In these serial compounds, magnetic RE ions are arranged on a perfect honeycomb lattice within the -plane and stacked in the "ABCABC"-type fashion along the -axis. All synthesized BaRE(SiO) (RE = Ho-Yb) polycrystals exhibit the dominant antiferromagnetic interaction and absence of magnetic order down to 2 K. In combination with the magnetization and electron spin resonance results, magnetic behaviors are discussed for the compounds with different RE ions. Moreover, the as-grown BaYb(SiO) single crystals show large magnetic frustration with frustration index = θ/ > 8 and no long-range magnetic ordering down to 0.15 K, being a possible QSL candidate material. These series of compounds are attractive for exploring the exotic magnetic phases of Kitaev materials with 4f electrons.

摘要

具有强自旋轨道耦合的1/2磁矩的稀土(RE)基蜂窝晶格材料作为实现基塔耶夫量子自旋液体(QSL)态的平台引起了极大关注。在此,我们报告发现了一族RE基蜂窝晶格磁体BaRE(SiO)(RE = Ho - Yb),它们结晶为具有空间群3̅的菱面体结构。在这些系列化合物中,磁性RE离子在平面内排列在完美的蜂窝晶格上,并沿轴以“ABCABC”型方式堆叠。所有合成的BaRE(SiO)(RE = Ho - Yb)多晶都表现出占主导地位的反铁磁相互作用,并且在2 K以下没有磁有序。结合磁化和电子自旋共振结果,讨论了不同RE离子化合物的磁行为。此外,生长的BaYb(SiO)单晶表现出大的磁阻挫,阻挫指数 = θ/ > 8,并且在0.15 K以下没有长程磁有序,是一种可能的QSL候选材料。这些系列化合物对于探索具有4f电子的基塔耶夫材料的奇异磁相具有吸引力。

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