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Influence of Tilted Fields on Magnetization Reversal in Fe Nanodots

机译:倾斜场对Fe纳米蛋白磁化逆转的影响

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Vortex states in magnetic nanodots are of high technological interest for data storage applications due to the reduced in-plane stray fields. Data can be stored in the core polarity and/or the vortex chirality. While magnetization reversal in magnetic nanodots occurs via vortex states for a broad range of dimensions, defining and switching core polarity and/or the vortex chirality is less simple. For single nanoparticles, previous studies found that a tilted field pulse can be used to switch these values. Here, the influence of a constant tilted field in addition to the switched external magnetic field on a small nanodot cluster is investigated.
机译:由于平面内的面内杂散场,磁纳米型中的涡流状态具有很高的数据存储应用的技术兴趣。数据可以存储在核心极性和/或涡旋手术中。虽然磁性纳米液中的磁化反转通过涡旋状态发生宽范围的尺寸,但定义和切换芯极性和/或涡旋手性不太简单。对于单个纳米颗粒,先前的研究发现,倾斜场脉冲可用于切换这些值。这里,研究了恒定倾斜场之外的影响除了小纳米簇簇上的开关外部磁场之外。

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