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使用一阶反转曲线对可调谐纳米磁体阵列中的相互作用进行定量解码。

Quantitative decoding of interactions in tunable nanomagnet arrays using first order reversal curves.

机构信息

Dept. of Physics, University of California, Davis, California, 95616, USA.

Dept. of Earth & Environmental Sciences, Ludwig-Maximilians-Universität München, Germany.

出版信息

Sci Rep. 2014 Feb 26;4:4204. doi: 10.1038/srep04204.

Abstract

To develop a full understanding of interactions in nanomagnet arrays is a persistent challenge, critically impacting their technological acceptance. This paper reports the experimental, numerical and analytical investigation of interactions in arrays of Co nanoellipses using the first-order reversal curve (FORC) technique. A mean-field analysis has revealed the physical mechanisms giving rise to all of the observed features: a shift of the non-interacting FORC-ridge at the low-HC end off the local coercivity HC axis; a stretch of the FORC-ridge at the high-HC end without shifting it off the HC axis; and a formation of a tilted edge connected to the ridge at the low-HC end. Changing from flat to Gaussian coercivity distribution produces a negative feature, bends the ridge, and broadens the edge. Finally, nearest neighbor interactions segment the FORC-ridge. These results demonstrate that the FORC approach provides a comprehensive framework to qualitatively and quantitatively decode interactions in nanomagnet arrays.

摘要

要全面了解纳米磁体阵列中的相互作用是一个持续的挑战,这对它们的技术接受度有重大影响。本文采用第一性反转曲线(FORC)技术,报告了 Co 纳米椭圆阵列中相互作用的实验、数值和分析研究。平均场分析揭示了导致所有观察到的特征的物理机制:在低磁场端,非相互作用的 FORC 脊从局部矫顽力 HC 轴上移开;在高磁场端,FORC 脊被拉伸但没有从 HC 轴上移开;以及在低磁场端形成与脊相连的倾斜边缘。从平坦到高斯矫顽力分布的变化会产生一个负特征,使脊弯曲,并使边缘变宽。最后,最近邻相互作用将 FORC 脊分段。这些结果表明,FORC 方法提供了一个全面的框架,可定性和定量地解码纳米磁体阵列中的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65b7/3935205/d9a1e5bd635d/srep04204-f1.jpg

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