Usov N A, Serebryakova O N
National University of Science and Technology «MISiS», Moscow, Russia, 119049.
Pushkov Institute of Terrestrial Magnetism, Ionosphere and Radio Wave Propagation, Russian Academy of Sciences, IZMIRAN, Troitsk, Moscow, Russia, 108480.
Sci Rep. 2022 Feb 24;12(1):3126. doi: 10.1038/s41598-022-07105-7.
The ferromagnetic resonance (FMR) spectra of dilute random assemblies of magnetite nanoparticles with cubic magnetic anisotropy and various aspect ratios are calculated using the stochastic Landau-Lifshitz equation at a finite temperature, T = 300 K, taking into account the thermal fluctuations of the particle magnetic moments. Particles of non-spherical shape in the first approximation are described as elongated spheroids with a given semiaxes ratio a/b, where a and b are the long and transverse semiaxes of a spheroid, respectively. A representative database of FMR spectra is created for assemblies of randomly oriented spheroidal magnetite nanoparticles with various transverse diameters D = 5-25 nm, moderate aspect ratios a/b = 1.0-1.8, and magnetic damping constants κ = 0.1, 0.2. The basic FMR spectra of assemblies with D = 25 nm at different aspect ratios can be considered as representatives of assemblies of single-domain magnetite nanoparticles with transverse diameters D > 25 nm. The database is calculated at exciting frequency f = 4.9 GHz (S-band) to clarify the details of the FMR spectrum that depend on the particle magnetic anisotropy nature. The data obtained make it possible to analyze arbitrary combined FMR spectra constructed as weighted linear combinations of FMR spectra of the base assemblies. In addition, using a genetic algorithm, the corresponding inverse problem is solved. The latter consists in determining the volume fractions of the base assemblies in some arbitrary nanoparticle assembly, which is represented by its FMR spectrum.
利用随机朗道 - 里夫希茨方程,在有限温度T = 300 K下,考虑到粒子磁矩的热涨落,计算了具有立方磁各向异性和不同纵横比的磁铁矿纳米颗粒稀随机集合体的铁磁共振(FMR)谱。在一阶近似中,非球形粒子被描述为具有给定半轴比a/b的细长椭球体,其中a和b分别是椭球体的长半轴和短半轴。针对随机取向的椭球形磁铁矿纳米颗粒集合体创建了一个代表性的FMR谱数据库,这些集合体具有不同的横向直径D = 5 - 25 nm、适中的纵横比a/b = 1.0 - 1.8以及磁阻尼常数κ = 0.1、0.2。横向直径D = 25 nm、不同纵横比的集合体的基本FMR谱可被视为横向直径D > 25 nm的单畴磁铁矿纳米颗粒集合体的代表。该数据库是在激发频率f = 4.9 GHz(S波段)下计算的,以阐明依赖于粒子磁各向异性性质的FMR谱的细节。所获得的数据使得能够分析作为基本集合体FMR谱的加权线性组合构建的任意组合FMR谱。此外,使用遗传算法解决了相应的反问题。后者在于确定某个任意纳米颗粒集合体中基本集合体的体积分数,该集合体由其FMR谱表示。