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强自旋轨道耦合过渡金属化合物中磁矩温度依赖性的理论研究进展

  • Hai Yang Wang
  • , Sheng Li Zhang
  • , Lei Zhang
  • , Ying Li
  • Xi'an Jiaotong University

科研成果: 期刊稿件文献综述同行评审

摘要

Transition-metal compounds with strong spin-orbit coupling (SOC) have attracted significant attention due to their potential for hosting exotic magnetic states such as frustrated magnetism, as well as their promising optoelectronic applications in hybrid halides. In these systems, the pronounced SOC effects often lead to magnetic behaviors that can not be adequately described by the standard Curie-Weiss law. In this review, based on our recent investigations, we summarize progress on the temperature evolution of magnetic susceptibilities and magnetic moments in SOC-driven systems. We first outline the general background. Using perovskite compounds as representative examples, we then systematically introduce the microscopic origin of the temperature dependence of magnetic susceptibilities for d1-d5 electronic configurations. We further discuss the evolution of magnetic moments and susceptibilities in systems based on magnetic clusters, such as dimers or trimers, and introduce modified Curie-Weiss fitting approaches that account for the temperature dependence of magnetic moments. Finally, we summarize current research trends and offer an outlook on potential future developments in this field.

投稿的翻译标题Theoretical progress on the temperature dependence of magnetic moments in strong spin-orbit-coupled systems
源语言繁体中文
文章编号240010
期刊Scientia Sinica: Physica, Mechanica et Astronomica
56
4
DOI
出版状态已出版 - 1 4月 2026

关键词

  • magnetic susceptibility
  • spin-orbit coupling
  • strongly correlated magnetic materials

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