论文标题

从一阶反转曲线重建相分辨的磁滞回路

Reconstructing phase-resolved hysteresis loops from first-order reversal curves

论文作者

Gilbert, Dustin A., Murray, Peyton D., De Rojas, Julius, Dumas, Randy K., Davies, Joseph E., Liu, Kai

论文摘要

一阶反转曲线(FORC)方法是一种基于磁力测定的技术,用于捕获纳米级磁相分离,并使用次要磁滞回路分析与宏观测量相互作用。这使得福克技术成为分析复杂系统的强大工具,该工具无法使用局部技术有效探测。但是,恢复有关可以与传统测量指标进行比较的确定阶段的定量细节仍然是一个神秘的挑战。我们通过选择性地整合测得的FORC分布来展示一种重建相分辨磁性磁滞回路的技术。从这些次要回路中,可以确定传统的指标 - 包括训练和饱和场,以及雷神和饱和磁化。为了进行此分析,必须特别考虑到所谓的可逆特征的准确定量管理。该技术在三种代表性材料系统:高各向异性纤维薄膜,Fe纳米模特和SMCO/Fe Exchange Spring磁铁膜上进行了证明,并与直接测量的主要环以及相位分离的环路显示出非常吻合的。

The first order reversal curve (FORC) method is a magnetometry based technique used to capture nanoscale magnetic phase separation and interactions with macroscopic measurements using minor hysteresis loop analysis. This makes the FORC technique a powerful tool in the analysis of complex systems which cannot be effectively probed using localized techniques. However, recovering quantitative details about the identified phases which can be compared to traditionally measured metrics remains an enigmatic challenge. We demonstrate a technique to reconstruct phase-resolved magnetic hysteresis loops by selectively integrating the measured FORC distribution. From these minor loops, the traditional metrics - including the coercivity and saturation field, and the remanent and saturation magnetization - can be determined. In order to perform this analysis, special consideration must be paid to the accurate quantitative management of the so-called reversible features. This technique is demonstrated on three representative materials systems, high anisotropy FeCuPt thin-films, Fe nanodots, and SmCo/Fe exchange spring magnet films, and shows excellent agreement with the direct measured major loop, as well as the phase separated loops.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源