论文标题
磁性材料中第二次谐波产生效应的分类
Classification of second harmonic generation effect in magnetically ordered materials
论文作者
论文摘要
磁顺序与第二次谐波产生(SHG)效应之间的关系是凝结物理学的基本研究领域,具有显着的实际意义。为了对这种复杂的关系有更清晰的了解,本研究为磁性有序材料中的SHG效应提供了全面的分类方案。该框架提供了连接磁顺序和SHG效果的直接方法。使用同构组方法研究了所有磁点组中SHG张量的特征,然后是全面的SHG效应分类方案,该方案包括七种类型的基于磁相及其相应父相的对称性。此外,还建立了包含SHG和线性磁化(LMO)效应的张量字典。此外,还建立了广泛的SHG磁性材料数据库。这种分类策略暴露了异常的SHG效应,甚至在时间反向对称性下具有特征,这仅由磁性结构贡献。此外,提出的分类方案有助于通过SHG效应确定磁结构。
The relationship between magnetic order and the second harmonic generation (SHG) effect is a fundamental area of study in condensed matter physics with significant practical implications. In order to gain a clearer understanding of this intricate relation, this study presents a comprehensive classification scheme for the SHG effect in magnetically ordered materials. This framework offers a straightforward approach to connect magnetic order and SHG effect. The characteristics of the SHG tensors in all magnetic point groups are studied using the isomorphic group method, followed by a comprehensive SHG effect classification scheme that includes seven types based on the symmetries of the magnetic phases and their corresponding parent phases. In addition, a tensor dictionary containing the SHG and linear magneto-optic (LMO) effect is established. Furthermore, an extensive SHG database of magnetically ordered materials is also built up. This classification strategy exposes an anomalous SHG effect with even characteristic under time-reversal symmetry, which is solely contributed by magnetic structure. Moreover, the proposed classification scheme facilitates the determination of magnetic structures through SHG effect.