Suppr超能文献

时间反演奇性反铁磁体中电场诱导的非互易方向二向色性

Electric Field-Induced Nonreciprocal Directional Dichroism in a Time-Reversal-Odd Antiferromagnet.

作者信息

Hayashida Takeshi, Matsumoto Koei, Kimura Tsuyoshi

机构信息

Department of Applied Physics, University of Tokyo, Bunkyo-ku, Tokyo, 113-8656, Japan.

出版信息

Adv Mater. 2025 Mar;37(9):e2414876. doi: 10.1002/adma.202414876. Epub 2025 Jan 15.

Abstract

Antiferromagnets with broken time-reversal ( ) symmetry ( -odd antiferromagnets) have gained extensive attention, mainly due to their ferromagnet-like behavior despite the absence of net magnetization. However, certain types of -odd antiferromagnets remain inaccessible by the typical ferromagnet-like phenomena (e.g., anomalous Hall effect). One such system is characterized by a -odd scalar quantity, the magnetic toroidal monopole. To access the broken symmetry in such a system, a unique nonreciprocal optical phenomenon, electric field-induced nonreciprocal directional dichroism (E-induced NDD), is employed. Signals of E-induced NDD are successfully detected in a -odd antiferromagnet, Co₂SiO₄, whose magnetic structure is characterized by the magnetic toroidal monopole. Furthermore, by spatially resolving the E-induced NDD, spatial distributions of a pair of domain states related to one another by the operation are visualized. The domain imaging revealed the inversion of the domain pattern by applying a magnetic field, which is explained by trilinear coupling attributed to the piezomagnetic effect. The observation of E-induced NDD highlights unique functionalities of -odd antiferromagnets.

摘要

具有破缺时间反演( )对称性的反铁磁体( 奇反铁磁体)受到了广泛关注,主要是因为它们尽管没有净磁化强度却具有类似铁磁体的行为。然而,某些类型的 奇反铁磁体仍然无法通过典型的类似铁磁体的现象(例如反常霍尔效应)来研究。这样一个系统的特征是一个 奇标量,即磁环形单极子。为了研究这样一个系统中的破缺 对称性,人们采用了一种独特的非互易光学现象,即电场诱导非互易方向二向色性(E诱导NDD)。在一种 奇反铁磁体Co₂SiO₄中成功检测到了E诱导NDD的信号,其磁结构以磁环形单极子为特征。此外,通过对E诱导NDD进行空间分辨,可视化了通过 操作相互关联的一对畴态的空间分布。畴成像显示了施加磁场时畴图案的反转,这可以通过压磁效应引起的三线性耦合来解释。对E诱导NDD的观测突出了 奇反铁磁体的独特功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d681/11881677/5e6a4eb2f121/ADMA-37-2414876-g008.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验