论文标题

纳米级磁性材料的磁化动力学:透视

Magnetization Dynamics of Nanoscale Magnetic Materials: A Perspective

论文作者

Barman, Anjan, Mondal, Sucheta, Sahoo, Sourav, De, Anulekha

论文摘要

纳米磁体形成了一系列微型节能设备的构建块,包括数据存储,内存,基于波浪的计算,传感器和生物医学设备。他们还提供了异国情调的现象和严厉的挑战。已经提出了单纳米磁体和一维阵列的磁化动力学的进展,以点,解毒剂,纳米粒子,二进制和双成分结构以及图案化的多层形式的形式进行。已经提出了非常规和新结构(例如人造自旋冰)以及三维纳米磁体以及旋转纹理(例如域壁,涡流和天空)的进展。此外,磁性纳米结构的磁化动力学中的各种新主题正在迅速出现。概述了稳定发展的主题,例如纳米结构快速动力学的时空成像,旋转纹理的动力学,人造自旋冰的动力学。此外,已经引入了当代和新不易发生的磁性结构的动力学,例如具有复杂基础和对称性,宏伟的准晶体,分形,缺陷结构,新颖的三维结构的纳米磁性阵列。各种自旋轨道耦合和随后的自旋纹理以及量子混合系统的影响,包括镁光子,镁磷和镁 - 麦克努森耦合,抗铁磁纳米结构的迅速增长,预计在未来几年内将在这一研究领域中占主导地位。最后,简要讨论了诸如Nutation Dynamics和Nanomagnet天线之类的相关主题。尽管表现出了很大的进步,但到目前为止,已经探索了一小部分纳米磁性及其辅助主题,并且在未来几代人的这个长期研究领域中设想了巨大的努力。

Nanomagnets form the building blocks for a gamut of miniaturized energy-efficient devices including data storage, memory, wave-based computing, sensors and biomedical devices. They also offer a span of exotic phenomena and stern challenges. The progress in the magnetization dynamics of single nanomagnets and one- and two-dimensional arrays of nanostructures in the form of dots, antidots, nanoparticles, binary and bicomponent structures and patterned multilayers have been presented. Progress in unconventional and new structures like artificial spin ice and three-dimensional nanomagnets and spin textures like domain walls, vortex and skyrmions have been presented. Furthermore, a huge variety of new topics in the magnetization dynamics of magnetic nanostructures are rapidly emerging. An overview of the steadily evolving topics like spatio-temporal imaging of fast dynamics of nanostructures, dynamics of spin textures, artificial spin ice have been discussed. In addition, dynamics of contemporary and newly transpired magnetic architectures such as nanomagnet arrays with complex basis and symmetry, magnonic quasicrystals, fractals, defect structures, novel three-dimensional structures have been introduced. Effects of various spin-orbit coupling and ensuing spin textures as well as quantum hybrid systems comprising of magnon-photon, magnon-phonon and magnon-magnon coupling, antiferromagnetic nanostructures are rapidly growing and are expected to dominate this research field in the coming years. Finally, associated topics like nutation dynamics and nanomagnet antenna are briefly discussed. Despite showing a great progress, only a small fraction of nanomagnetism and its ancillary topics have been explored so far and huge efforts are envisaged in this evergrowing research area in the generations to come.

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