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Magnetostatic interaction effects in switching field distribution of conventional and staggered bit-patterned media

机译:静磁相互作用在常规和交错位模式介质切换场分布中的作用

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摘要

Effect of magnetostatic interaction on the switching field distribution (SFD) of nanodots with a diameter of 30 nm was investigated in square (conventional) and hexagonal (staggered) lattice configurations. The objective of the study is to achieve different kinds of magnetostatic interaction in experimental samples and to understand their influence on SFD. It was observed that the SFD was wider in the staggered lattice. Micromagnetic simulation was carried out and a fit of experimental results to the simulation was made to understand the observed trends. In addition, magnetic layers with an antiferromagnetic coupling configuration were also studied in the two geometries. The SFD of antiferromagnetically coupled dots was further reduced, highlighting the effect of magnetostatic interaction.
机译:在正方形(常规)和六角形(交错)晶格结构中研究了静磁相互作用对直径为30 nm的纳米点的开关场分布(SFD)的影响。该研究的目的是在实验样品中实现各种静磁相互作用,并了解它们对SFD的影响。观察到,SFD在交错格子中较宽。进行了微磁仿真,并对仿真结果进行了拟合,以了解观察到的趋势。另外,还在这两种几何结构中研究了具有反铁磁耦合构造的磁性层。反铁磁耦合点的SFD进一步降低,突出了静磁相互作用的影响。

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