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使用微霍尔磁强计对单个磁性纳米结构进行一阶反转曲线(FORC)分析。

First order reversal curves (FORC) analysis of individual magnetic nanostructures using micro-Hall magnetometry.

作者信息

Pohlit Merlin, Eibisch Paul, Akbari Maryam, Porrati Fabrizio, Huth Michael, Müller Jens

机构信息

Institute of Physics, Goethe-University, Frankfurt/Main, Germany.

出版信息

Rev Sci Instrum. 2016 Nov;87(11):113907. doi: 10.1063/1.4967940.

Abstract

Alongside the development of artificially created magnetic nanostructures, micro-Hall magnetometry has proven to be a versatile tool to obtain high-resolution hysteresis loop data and access dynamical properties. Here we explore the application of First Order Reversal Curves (FORC)-a technique well-established in the field of paleomagnetism for studying grain-size and interaction effects in magnetic rocks-to individual and dipolar-coupled arrays of magnetic nanostructures using micro-Hall sensors. A proof-of-principle experiment performed on a macroscopic piece of a floppy disk as a reference sample well known in the literature demonstrates that the FORC diagrams obtained by magnetic stray field measurements using home-built magnetometers are in good agreement with magnetization data obtained by a commercial vibrating sample magnetometer. We discuss in detail the FORC diagrams and their interpretation of three different representative magnetic systems, prepared by the direct-write Focused Electron Beam Induced Deposition (FEBID) technique: (1) an isolated Co-nanoisland showing a simple square-shaped hysteresis loop, (2) a more complex CoFe-alloy nanoisland exhibiting a wasp-waist-type hysteresis, and (3) a cluster of interacting Co-nanoislands. Our findings reveal that the combination of FORC and micro-Hall magnetometry is a promising tool to investigate complex magnetization reversal processes within individual or small ensembles of nanomagnets grown by FEBID or other fabrication methods. The method provides sub-μm spatial resolution and bridges the gap of FORC analysis, commonly used for studying macroscopic samples and rather large arrays, to studies of small ensembles of interacting nanoparticles with the high moment sensitivity inherent to micro-Hall magnetometry.

摘要

随着人工制造的磁性纳米结构的发展,微霍尔磁强计已被证明是一种通用工具,可用于获取高分辨率磁滞回线数据并研究动力学特性。在此,我们探索一阶反转曲线(FORC)——一种在古地磁学领域已确立的用于研究磁性岩石中晶粒尺寸和相互作用效应的技术——在使用微霍尔传感器的磁性纳米结构的单个和偶极耦合阵列中的应用。在一块宏观软盘上进行的原理验证实验作为文献中熟知的参考样品,结果表明,使用自制磁力计通过磁杂散场测量获得的FORC图与商用振动样品磁力计获得的磁化数据高度吻合。我们详细讨论了通过直写聚焦电子束诱导沉积(FEBID)技术制备的三种不同代表性磁性系统的FORC图及其解释:(1)一个孤立的钴纳米岛,显示出简单的方形磁滞回线;(2)一个更复杂的钴铁合金纳米岛,呈现出蜂腰型磁滞;(3)一组相互作用的钴纳米岛。我们的研究结果表明,FORC与微霍尔磁强计的结合是研究通过FEBID或其他制造方法生长的单个或小尺寸纳米磁体集合内复杂磁化反转过程的一种有前途的工具。该方法提供了亚微米级的空间分辨率,并弥合了通常用于研究宏观样品和相当大阵列的FORC分析与具有微霍尔磁强计固有高矩灵敏度的相互作用纳米颗粒小集合研究之间的差距。

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