,Coercivity mechanisms in nanostructured permanent magnets

来源 :中国物理B(英文版) | 被引量 : 0次 | 上传用户:bao21987
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Coercivity mechanism in permanent magnets has been debated for many years. In this paper, various models of the coercivity mechanism are classified and re-examined by the comparison and contrast. Coherent rotation and curling models can reveal the underlying reversal mechanism clearly based on isolated grains with elliptic shapes. By contrast, the numerical methods consider inter-grain interactions while simulating the evolution of the spins and hysteresis loops with complicated shapes. However, an exact simulation of magnetic reversal in permanent nanomagnets requires many meshes to mimic the thin domain wall well. Nucleation and pinning are the two main coercivity mechanisms in permanent magnets. The former signifies the beginning of the magnetic reversal, whilst the latter completes it. Recently, it is proposed that the large difference between the intrinsic magnetic properties of the nucleation centers and those of the main phase can result in a large pinning field (self-pinning), which has the attributes of both traditional nucleation and pinning. Such a pinning explains the experimental data of permanent magnets very well, including the enhancement of the coercivity by the grain boundary pinning.
其他文献
辽阳市位于辽宁中部,无霜期160天左右,全年活动积温3508℃,属一季有余两季不足农业区.为探索两茬栽培高产途径,我们于1990年进行了小麦下茬复栽玉米的试验,取得了两茬合计110
Magnetic skyrmions have interesting properties,including their small size,topological stability,and extremely low threshold current for current-driven motion.Th
Magnetic oxide semiconductors are significant spintronics materials.In this article,we review recent advances for homogeneous and inhomogeneous magnetic oxide s
芥菜是我国南方广泛栽植的十字花科蔬菜作物,开花时间的早晚将会影响产品器官的产量与品质。虽然在模式植物拟南芥中已分离出大量与开花相关的基因,但是,在蔬菜作物芥菜上这
The initial growth and microstructure feature of Ag films formation were investigated,which were prepared by using the very-high-frequency (VHF) (60 MHz) magnet
The interaction of an atom with an intense laser field provides an important approach to explore the ultrafast electron dynamics and extract the information of
Electron magnetic circular dichroism opens a new door to explore magnetic properties by transmitted electrons in the transmission electron microscope.However,ob
Diamond, as the hardest known material, has been widely used in industrial applications as abrasives, coatings, and cutting and polishing tools, but it is restr