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Micromagnetic Simulations of Exchange-Coupled Core–Shell Particulate Media

机译:交换耦合核壳颗粒介质的微磁模拟

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Micromagnetic simulations are used to investigate the reversal of exchange-coupled magnetic core-shell particles and their application to particulate tape recording. With thin soft magnetic shells, the reversal of the core-shell particle remains of Stoner-Wohlfarth type. We find that the thicker the shell or the higher its saturation magnetization, the larger the reduction of the particle switching field, in quantitative agreement with analytical predictions. Recording simulations are also performed for core/shell particulate media. This paper demonstrates that core-shell particles can provide broadband signal-to-noise ratio improvement over conventional single phase nanoparticles, while still satisfying thermal stability and writeability using conventional ring-type writers.
机译:微磁模拟用于研究交换耦合的磁核-壳粒子的逆转及其在微粒带记录中的应用。使用薄的软磁壳,核壳粒子的反转仍然是Stoner-Wohlfarth类型的。我们发现壳越厚或其饱和磁化强度越高,粒子转换场的减小幅度就越大,这与分析预测在定量上吻合。还对核/壳颗粒介质进行了记录模拟。本文证明了核-壳粒子可以提供比常规单相纳米粒子更高的宽带信噪比,同时仍然可以满足使用常规环型书写器的热稳定性和可写性。

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