论文标题

磁性纳米带中的域壁运动

Domain Wall Motion in Magnetic Nanostrips

论文作者

Alejos, Oscar, Raposo, Víctor, Martínez, Eduardo

论文摘要

域壁是两个磁域之间的过渡区域。在过去的十年中,这些对象非常相关,这不仅是由于它们对新型Spintronics设备的开发的内在兴趣,而且还因为它们的基本兴趣。对域壁的研究与新型自旋轨道耦合现象的研究有关,例如dzyaloshinskii-Moriya相互作用和旋转厅效应其他。域壁可以在铁磁性纳米带中成核,并且由于注入电脉冲而导致的常规磁场和自旋电流可以驱动,这使它们对于记录和逻辑设备的技术应用非常有希望。在这篇综述中,基于由扩展一维模型支持的完整微磁模拟,我们描述了具有垂直磁各向异性的薄铁磁和铁磁线中域壁的静态和动态性能。本章旨在提供域墙基础基础的基本理论描述,以及允许描述以前和将来的实验设置中DW动态的数值工具和模型。

Domain walls are the transition regions between two magnetic domains. These objects have been very relevant during the last decade, not only due to their intrinsic interest in the development of novel spintronics devices but also because of their fundamental interest. The study of domain wall has been linked to the research on novel spin-orbit coupling phenomena such as the Dzyaloshinskii-Moriya interaction and the spin Hall effect amount others. Domain walls can be nucleated in ferromagnetic nanostrips and can be driven by conventional magnetic fields and spin currents due to the injection of electrical pulses, which make them very promising for technological applications of recording and logic devices. In this review, based on full micromagnetic simulations supported by extended one-dimensional models, we describe the static and dynamic properties of domain walls in thin ferromagnetic and ferrimagnetic wires with perpendicular magnetic anisotropy. The present chapter aims to provide a fundamental theoretical description of the fundaments of domain walls, and the numerical tools and models which allow describing the DW dynamics in previous and future experimental setups.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源