论文标题

抗铁磁动力学的最新进展

Recent progress in antiferromagnetic dynamics

论文作者

Yuan, H. Y., Yuan, Zhe, Duine, Rembert A., Wang, X. R.

论文摘要

自启动以来,Spintronics主要集中于铁磁材料,用于操纵自由度的自由度,而自由度的自由度除外,而对抗磁磁材料的关注却少得多。由于微型纳米制作技术的进步和Néel订单参数的电控制,因此由于室温大量材料,针对外部田间的稳健性和偶极耦合以及Terahertz制度中的快速动态学,反铁磁性旋转型蓬勃发展。出于抗铁磁铁的应用,必须全面了解微观级别的抗磁动力学。在这里,我们首先回顾了控制抗铁磁和铁磁动力学的一般形式。这种一般形式统一了文献中以前的理论。我们还提供了有关与抗铁磁动力学有关的最新进展的调查,包括抗铁磁域壁和天空的运动,自旋泵送和量子抗铁磁磁性自旋。特别是,概述了几个主题中的开放问题。此外,我们讨论了反铁磁量子镁的发展及其与现代信息科学技术的潜在整合。

Spintronics, since its inception, has mainly focused on ferromagnetic materials for manipulating the spin degree of freedom in addition to the charge degree of freedom, whereas much less attention has been paid to antiferromagnetic materials. Thanks to the advances of micro-nano-fabrication techniques and the electrical control of the Néel order parameter, antiferromagnetic spintronics is booming as a result of abundant room temperature materials, robustness against external fields and dipolar coupling, and rapid dynamics in the terahertz regime. For the purpose of applications of antiferromagnets, it is essential to have a comprehensive understanding of the antiferromagnetic dynamics at the microscopic level. Here, we first review the general form of equations that govern both antiferromagnetic and ferrimagnetic dynamics. This general form unifies the previous theories in the literature. We also provide a survey for the recent progress related to antiferromagnetic dynamics, including the motion of antiferromagnetic domain walls and skyrmions, the spin pumping and quantum antiferromagnetic spintronics. In particular, open problems in several topics are outlined. Furthermore, we discuss the development of antiferromagnetic quantum magnonics and its potential integration with modern information science and technology.

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