Micromagnetic Simulation of Ferromagnetic Resonance in a Nanosized Bilayer Exchange-Coupled Square-Shaped Ferromagnetic Film

IF 1.1 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING
N. V. Shulga, R. A. Doroshenko
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Abstract

A numerical method for computing ferromagnetic resonance (FMR) is adapted for a confined bilayer exchange-coupled film. In this method, the system is unbalanced from the equilibrium by a short weak external magnetic field, and then the OOMMF micromagnetic simulation package is used to simulate the system’s return to equilibrium and to record the resulting magnetization dynamics. After performing the Fourier transform of the time series of magnetization variation, the frequency dependences of the spectral density are calculated. The resonance frequencies are determined by correlating the maxima of these dependences with their corresponding frequencies. The study concerns the main modes and corresponding distributions of magnetization excitation in films of varying sizes when the constant magnetic field changes from saturating to zero. The FMR has been investigated, specifically, for the earlier studied vortex distribution of magnetization in the normal state. It is shown that the transition of the main mode to the low-frequency region occurs when the intensity of the external magnetic field decreases. This technique can be used to analyze the dynamic properties of multiferroic heterostructures in the future.

Abstract Image

纳米级双层交换耦合方形铁磁薄膜中铁磁共振的微磁模拟
摘要 一种计算铁磁共振(FMR)的数值方法适用于约束双层交换耦合膜。在该方法中,通过一个短的弱外部磁场使系统失去平衡,然后使用 OOMMF 微磁模拟软件包模拟系统恢复平衡并记录由此产生的磁化动态。对磁化变化的时间序列进行傅立叶变换后,计算出频谱密度的频率相关性。共振频率是通过将这些相关性的最大值与其相应频率相关联而确定的。研究涉及恒定磁场从饱和到零变化时,不同尺寸薄膜中磁化激发的主要模式和相应分布。特别是针对之前研究过的正常状态下的磁化涡旋分布,研究了调频激磁。研究表明,当外部磁场强度减弱时,主模式会过渡到低频区。这项技术今后可用于分析多铁性异质结构的动态特性。
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来源期刊
Physics of Metals and Metallography
Physics of Metals and Metallography 工程技术-冶金工程
CiteScore
2.00
自引率
25.00%
发文量
108
审稿时长
3 months
期刊介绍: The Physics of Metals and Metallography (Fizika metallov i metallovedenie) was founded in 1955 by the USSR Academy of Sciences. Its scientific profile involves the theory of metals and metal alloys, their electrical and magnetic properties, as well as their structure, phase transformations, and principal mechanical properties. The journal also publishes scientific reviews and papers written by experts involved in fundamental, application, and technological studies. The annual volume of publications amounts to some 250 papers submitted from 100 leading national scientific institutions.
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