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Coercivity of domain wall motion in thin films of amorphous rare earth-transition metal alloys

机译:非晶态稀土过渡金属合金薄膜中畴壁运动的矫顽力

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摘要

Computer simulations of a two dimensional lattice of magnetic dipoles are performed on the Connection Machine. The lattice is a discrete model for thin films of amorphous rare-earth transition metal alloys, which have application as the storage media in erasable optical data storage systems. In these simulations, the dipoles follow the dynamic Landau-Lifshitz-Gilbert equation under the influence of an effective field arising from local anisotropy, near-neighbor exchange, classical dipole-dipole interactions, and an externally applied field. Various sources of coercivity, such as defects and/or inhomogeneities in the lattice, are introduced and the subsequent motion of domain walls in response to external fields is investigated.
机译:在连接机上执行了磁偶极子二维晶格的计算机模拟。晶格是非晶态稀土过渡金属合金薄膜的离散模型,已将其用作可擦写光学数据存储系统中的存储介质。在这些模拟中,偶极子在受到局部各向异性,近邻交换,经典偶极子-偶极子相互作用以及外部施加场的有效场的影响下遵循动态Landau-Lifshitz-Gilbert方程。介绍了矫顽力的各种来源,例如晶格中的缺陷和/或不均匀性,并研究了畴壁响应于外部场的后续运动。

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