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首页> 外文期刊>Journal of magnetism and magnetic materials >Athermal exploration of Kagome artificial spin ice states by rotating field protocols
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Athermal exploration of Kagome artificial spin ice states by rotating field protocols

机译:通过旋转场协议对Kagome人造自旋冰状态进行非热探测

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摘要

Artificial Kagome spin ice arrays consisting of nanomagnets are model systems for the study of geometrical frustration, for which field demagnetization methods are insufficient to drive them in their ground states. Here the efficiency of different demagnetization protocols (involving rotation) is studied by micromagnetic simulations. The hysteresis loop of each element is greatly influenced by the magnetic state of the nearest neighbors, not only by the expected shift due to dipolar interaction bias, but as it regards the loop shape and width itself, which presents a correction to the usual macrospin calculation assumptions. It is shown that rotation in angular steps a little less than 180° is the most effective process in accessing the largest possible number states before ending up near the ground state even in the absence of any disorder which is shown to represent the most unfavorable case.
机译:由纳米磁体组成的人工Kagome自旋冰阵列是用于研究几何挫折的模型系统,其磁场消磁方法不足以使其处于基态。在这里,通过微磁仿真研究了不同的退磁协议(涉及旋转)的效率。每个元件的磁滞回线都受最近邻域的磁状态的影响很大,不仅受偶极相互作用偏置引起的预期偏移,而且还影响到回线形状和宽度本身,这对常规的宏旋转计算提供了一种校正方法。假设。结果表明,即使没有任何表现出最不利情况的混乱,在接近基态之前,以小于180°的角度步进旋转也是访问最大可能状态的最有效过程。

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