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首页> 外文期刊>The Physics of Metals and Metallography >Simulation of Three-Dimensional Micromagnetic Structures in Magnetically Uniaxial Films with In-Plane Anisotropy. Dynamics and Structural Reconstructions
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Simulation of Three-Dimensional Micromagnetic Structures in Magnetically Uniaxial Films with In-Plane Anisotropy. Dynamics and Structural Reconstructions

机译:具有面内各向异性的单轴磁性薄膜中三维微磁结构的模拟。动力学与结构重建

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摘要

Transition processes in noncquilibrium micromagnetic structures that represent regions of various types of asymmetrical vortex domain walls with closely spaced transition structural elements, including vertical Bloch lines (VBLs), singular points, and clusters consisting of VBLs and singular points, have been studied by the method of three-dimensional numerical simulation of the magnetization behavior. The realization of various scenarios of dynamic behavior, including the annihilation of transition elements accompanied by the liberation of energy and the initiation of wave processes, has been shown to be possible. The simulation was performed for the case of magnetically uniaxial ferromagnetic films with an easy axis parallel to their surface with exact allowance for the inhomogeneous exchange, magnetoanisotropic, and magnetostatic interactions.
机译:通过这种方法,研究了非平衡微磁结构中的过渡过程,该结构代表具有紧密间隔的过渡结构元素(包括垂直Bloch线(VBL),奇异点以及由VBL和奇异点组成的簇)的各种类型的不对称涡旋畴壁的区域磁化行为的三维数值模拟。已经证明有可能实现各种动态行为,包括消灭过渡元素,伴随能量的释放和波动过程的开始。对具有易轴平行于其表面且具有非均质交换,磁各向异性和静磁相互作用的精确余量的磁性单轴铁磁膜进行了仿真。

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