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具有交替强铁磁和弱磁段的 Fe-Au 条码纳米线中的互连线和内连线静磁相互作用。

Interwire and Intrawire Magnetostatic Interactions in Fe-Au Barcode Nanowires with Alternating Ferromagnetically Strong and Weak Segments.

机构信息

Institute of High Technologies and Advanced Materials, Far Eastern Federal University, Vladivostok, 690922, Russia.

Center for Hydrogen·Fuel Cell Research, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.

出版信息

Small. 2022 Nov;18(47):e2203555. doi: 10.1002/smll.202203555. Epub 2022 Oct 3.

Abstract

Metallic barcode nanowires (BNWs) composed of repeating heterogeneous segments fabricated by template-assisted electrodeposition can offer extended functionality in magnetic, electrical, mechanical, and biomedical applications. The authors consider such nanostructures as a 3D system of magnetically interacting elements with magnetic behavior strongly affected by complex magnetostatic interactions. This study discusses the influence of geometrical parameters of segments on the character of their interactions and the overall magnetic behavior of the array of BNWs having alternating magnetization, because the Fe and Au segments are made of Fe-Au alloys with high and low magnetizations. By controlling the applied current densities and the elapsed time in the electrodeposition, the dimension of the Fe-Au BNWs can be regulated. This study reveals that the influence of the length of magnetically weak Au segments on the interaction field between nanowires is different for samples with magnetically strong 100 and 200 nm long Fe segments using the first-order reversal curve (FORC) diagram method. With the help of micromagnetic simulations, three types of magnetostatic interactions in the BNW arrays are discovered and analy. This study demonstrates that the dominating type of interaction depends on the geometric parameters of the Fe and Au segments and the interwire and intrawire distances.

摘要

由模板辅助电沉积制造的具有重复异质段的金属条码纳米线(BNWs)在磁性、电气、机械和生物医学应用中提供了扩展的功能。作者将这些纳米结构视为具有磁相互作用的元素的 3D 系统,其磁行为受复杂静磁相互作用的强烈影响。本研究讨论了段的几何参数对其相互作用和具有交替磁化的 BNW 阵列整体磁行为的影响,因为 Fe 和 Au 段由具有高和低磁化率的 Fe-Au 合金制成。通过控制施加的电流密度和电沉积过程中的时间,可以调节 Fe-Au BNW 的尺寸。本研究表明,使用第一阶反转曲线(FORC)图方法,对于具有强磁性的 100nm 和 200nm 长 Fe 段的样品,磁弱 Au 段的长度对纳米线之间相互作用场的影响是不同的。借助微磁模拟,发现了 BNW 阵列中的三种静磁相互作用类型并进行了分析。本研究表明,相互作用的主要类型取决于 Fe 和 Au 段以及线间和线内距离的几何参数。

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