Magnetoelastic Losses in the Linear Response Region for Three- and Four-Axis Idealized Magnets

L. Petrova, N.M. Ignatenko, A. Gromkov
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Abstract

In the presented studies, a description of the losses related to relaxation processes in idealized three- and four-axis ferromagnets, as well as ferrites, is considered for the case of a linear response (small perturbations) on the basis of a macroscopic approach. The description takes into account reversible 90° displacements of domain walls (DW) of concentrations (с), ways of DW pinning by linear defects, and processes of DW displacements and rotations of the spontaneous magnetization vector I⃗s, caused by a longitudinal elastic stress wave σ. As a result, the anisotropy of amplitude-independent losses emerges due to displacement processes. Frequency dependence of losses is obtained with consideration of the magnetic symmetry of the crystal, its magnetostructural parameters, and the concentration of magnetic phases ci. The paper also describes the internal frictionn Q-1, the absorption coefficient a, the velocity of propagation of elastic vibrations v and the Δ (1/E)-effect, thus allowing to reveal the texture in the distribution of DWs by their types. It is shown that if the relaxation times of rotation processes τ = β / 2K1 and displacement processes τc = βс / mω20 are the same, then the maxima of the dependence of internal friction on frequency Qc-1(ω) and QB-1(ω) superimpose on each other. The revealed features of magneto-elastic energy dissipation are of interest for laboratory studies and have promising applications in practice for determining the orientation of crystals, describing the texture, and calculating the differential ΔЕ-effect in magnets. The features of the ΔЕ-effect for the considered cases are also revealed.
三轴和四轴理想化磁体线性响应区的磁弹性损耗
在本文的研究中,以宏观方法为基础,考虑了线性响应(小扰动)情况下理想化三轴和四轴铁磁体以及铁氧体中与弛豫过程有关的损耗描述。该描述考虑了浓度 (с) 域壁 (DW) 的可逆 90° 位移、线性缺陷对 DW 的钉扎方式,以及纵向弹性应力波 σ 引起的 DW 位移和自发磁化矢量 I⃗s 的旋转过程。因此,由于位移过程,出现了与振幅无关的各向异性损耗。考虑到晶体的磁对称性、磁结构参数和磁相浓度 ci,可以得到损耗的频率依赖性。论文还描述了内摩擦力 n Q-1、吸收系数 a、弹性振动传播速度 v 和 Δ (1/E) 效应,从而揭示了 DW 分布的纹理类型。 研究表明,如果旋转过程 τ = β / 2K1 和位移过程 τc = βс / mω20 的弛豫时间相同,那么内摩擦力对频率依赖性的最大值 Qc-1(ω) 和 QB-1(ω) 就会相互叠加。 所揭示的磁弹性能量耗散特征对实验室研究很有意义,在确定晶体取向、描述纹理和计算磁体中的差分ΔЕ效应等方面也有很好的实际应用前景。此外,还揭示了所考虑情况下ΔЕ效应的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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