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首页> 外文期刊>Physical Review, B. Condensed Matter >High-frequency response and reversal dynamics of two-dimensional magnetic dot arrays
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High-frequency response and reversal dynamics of two-dimensional magnetic dot arrays

机译:二维磁点阵列的高频响应和反向动力学

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摘要

Results from simulations of dynamic response for finite arrays of single domain magnetic dots are presented. Linear and nonlinear high-frequency properties are discussed, and a relevance of these properties to magnetization reversal in switching processes is shown. Particular attention is given to effects of array geometry and applied field orientation. The direction of an applied field relative to the array sides is found to be important for determining degeneracies in the linear magnetostatic mode spectrum. Nonlinear microwave response is also examined by simulating effects of strong if fields, and routes to chaos are found that depend on the field orientation A connection between magnetostatic mode excitation and reversal times under a switching field is suggested. A consequence is a dramatic slowing of reversal rates for a range of dot packing densities. [S0163-1829(99)02438-8]. [References: 13]
机译:给出了单域磁点有限阵列的动态响应仿真结果。讨论了线性和非线性高频特性,并显示了这些特性与开关过程中磁化反转的相关性。特别注意阵列几何形状和施加的场方向的影响。发现相对于阵列侧的施加场的方向对于确定线性静磁模式频谱中的简并性很重要。非线性微波响应也可以通过模拟强磁场的影响来检查,并且可以找到取决于磁场方向的混沌路径。建议在开关磁场下静磁模式激励与反转时间之间建立联系。结果是在一定范围的点堆积密度下,反转速率显着降低。 [S0163-1829(99)02438-8]。 [参考:13]

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