反铁磁性
凝聚态物理
对称(几何)
物理
自旋(空气动力学)
工作(物理)
磁性
动量(技术分析)
Crystal(编程语言)
磁化率
材料科学
磁矩
角动量
费米能级
晶体结构
从头算量子化学方法
望远镜
单晶
相变
作者
Chang-Chao Liu,Jing Li,Ji-Yong Liu,Jia-Yi Lu,Hua-Xun Li,Yi Liu,Guang-Han Cao
出处
期刊:Physical review
[American Physical Society]
日期:2025-12-05
卷期号:112 (22)
摘要
We report the crystal growth, structure, physical properties, and first-principles calculations of a vanadium-based oxytelluride Cs$_{1-δ}$V$_2$Te$_2$O. The material possesses two-dimensional V$_2$O square nets sandwiched by tellurium layers, with local crystallographic symmetry satisfying the spin symmetry for a $d$-wave altermagnet. An antiferromagnetic transition at 293 K is unambiguously evidenced from the measurements of magnetic susceptibility and specific heat. In addition, a secondary transition at $\sim$70 K is also observed, possibly associated with a Lifshitz transition. The first-principles calculations indicate robust Néel-type collinear antiferromagnetism in the V$_2$O plane. Consequently, spin splittings show up in momentum space, in relation with the real-space mirror/rotation symmetry. Interestingly, the V-$d_{yz}/d_{xz}$ electrons, which primarily contribute the quasi-one-dimensional Fermi surface, turns out to be fully orbital- and spin-polarized, akin to the case of a half metal. Our work lays a solid foundation on the potential applications utilizing altermagnetic properties in vanadium-based oxychalcogenides.
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