论文标题

Zintl相绝缘子Euzn2p2中的偶极磁相互作用和A型抗铁磁序

Dipolar Magnetic Interactions and A-type Antiferromagnetic Order in the Zintl Phase Insulator EuZn2P2

论文作者

Berry, Tanya, Stewart, Veronica J., Redemann, Benjamin W. Y., Lygouras, Chris, Varnava, Nicodemos, Vanderbilt, David, McQueen, Tyrel M.

论文摘要

ZINTL阶段包含具有独立的离子键离子的强烈共价键合的框架,已成为一种关键材料家族,在其中,将磁性和强旋轨耦合逐渐发展以驱动物质的各种拓扑阶段。在这里,我们报告了Zintl化合物Euzn2p2的单晶合成,磁性,热力学,传输和理论特性,该特性在抗LA2O3 P-3M1结构中结晶,其中包含EU2+离子的三角形层。平面电阻率测量显示,估计的带隙为Eg = 0.11EV,揭示了绝缘行为。比较跨三角EUM2x2(M =二价金属,X = pnictide)的欧盟磁有序温度表明,EUZN2P2表现出最高的排序温度,TN的变化与预期的偶极相互作用强度的变化相关。这些结果提供了细胞化学直觉的实验验证,即阳离子EU2+层和阴离子(M2X2)2-框架可以视为电子不同的亚基,从而实现了进一步的预测材料设计。

Zintl phases, containing strongly covalently bonded frameworks with separate ionically bonded ions, have emerged as a critical materials family in which to couple magnetism and strong spin-orbit coupling to drive diverse topological phases of matter. Here we report the single-crystal synthesis, magnetic, thermodynamic, transport, and theoretical properties of the Zintl compound EuZn2P2 that crystallizes in the anti-La2O3 P-3m1 structure, containing triangular layers of Eu2+ ions. In-plane resistivity measurements reveal insulating behavior with an estimated bandgap of Eg=0.11eV. Comparing Eu magnetic ordering temperatures across trigonal EuM2X2 (M=divalent metal, X=pnictide) shows that EuZn2P2 exhibits the highest ordering temperature, with variations in TN correlating with changes in expected dipolar interaction strengths within and between layers and independent of the magnitude of electrical conductivity. These results provide experimental validation of the cytochemical intuition that the cation Eu2+ layers and the anionic (M2X2)2- framework can be treated as electronically distinct subunits, enabling further predictive materials design.

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