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A phenomenological approach to study the effect of uniaxial anisotropy on the magnetization of ferromagnetic nanoparticles

机译:现象学方法研究单轴各向异性对铁磁纳米粒子磁化的影响

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摘要

We study the effect of the uniaxial anisotropy in a system of ideal, noninteracting ferromagnetic nanoparticles by means of a thermodynamical model. We show that the effect of the anisotropy can be easily assimilated in a temperature shift T*(a), in analogy to what was proposed by Allia et al. (2001) in the case of interacting nanomagnets. The phenomenological anisotropic T*(a) parameter can be negative, indicating an antiferromagnetic-like behavior, or positive, indicating a ferromagnetic-like character as seen in the inverse susceptibility behavior as a function of temperature. The study is done considering an easy axis distribution to take into account the anisotropy axis dispersion in real samples (texture). In the case of a volumetric uniform distribution of anisotropy axes, the net effect makes T*(a) to vanish, and the magnetic susceptibility behaves like a conventional superparamagnetic system, whereas in the others a finite value is obtained for T*(a). When magnetic moment distribution is considered, the effect is to enhance the T*(a) parameter, when the dispersion of the magnetic moments becomes wider. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们通过热力学模型研究了在理想的,非相互作用的铁磁纳米粒子系统中单轴各向异性的影响。我们表明,与Allia等人所提出的类似,在温度变化T *(a)中可以很容易地吸收各向异性的影响。 (2001年)在相互作用的纳米磁铁。现象学各向异性T *(a)参数可以是负值,表示类似反铁磁的行为,也可以是正值,表示在反磁化行为中随温度变化的铁磁特性。在考虑易轴分布的情况下进行了研究,考虑了真实样本(纹理)中的各向异性轴分散。在各向异性轴的体积均匀分布的情况下,净效应使T *(a)消失,磁化率的行为类似于常规的超顺磁系统,而在其他情况下,获得的T *(a)为有限值。当考虑磁矩分布时,当磁矩的色散变宽时,效果是提高T *(a)参数。 (C)2017 Elsevier B.V.保留所有权利。

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