拓扑绝缘体
物理
拓扑(电路)
格子(音乐)
量子反常霍尔效应
拓扑序
拓扑量子数
对称保护拓扑序
实现(概率)
铰链
拓扑简并
手征异常
凝聚态物理
物理中的拓扑熵
六方晶系
相(物质)
量子
手性(物理)
六边形晶格
输运现象
电荷(物理)
理论物理学
拓扑缺陷
量子霍尔效应
订单(交换)
量子力学
相变
作者
Chengwu Xie,Weizhen Meng,Zhenzhou Guo,Xiaodong Zhou,Shifeng Qian,Tie Yang,Wenhong Wang,Zhenxiang Cheng,Xiaotian Wang
摘要
ABSTRACT In this work, we introduce a new class of chiral altermagnetic magnetoelectrics in structurally chiral, nonpolar altermagnetic systems and identify the experimentally well‐characterized three‐dimensional metal–organic framework K[Co(HCOO)] as a promising material platform. K[Co(HCOO)] exhibits chirality‐locked g ‐wave altermagnetic spin splitting together with dual‐mode switchable electric polarization controlled by Néel‐vector reorientation and structural chirality. Specifically, Néel‐vector reorientation generates a finite electric polarization and reverses its sign, whereas chirality switching between left‐ and right‐handed enantiomers produces an additional sign reversal. The associated electronic and optical responses provide effective readout channels for these switchable states. Our results establish chiral altermagnetic magnetoelectrics as a promising route to chirality‐ and Néel‐vector‐controlled nonvolatile multifunctional spintronics.
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