Magnetic Hysteresis Properties of Fine Particles of Monoclinic Pyrrhotite Fe7S8.

A. Menyeh, W. O'reilly
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引用次数: 7

Abstract

The magnetic hysteresis properties have been studied of synthetic Fe7S8 separated into a suite of 8 particle size fractions in the range 1 to 30μm. Between-196°C to about 260°C, both saturation isothermal remanence (Mrs) and coercive force (Hc) can be represented as analytical functions of particle size (L) of the form (Mrs, Hc) ∝ L-n or (Mrs, Hc) ∝ exp(-kL1+2) although the particle size dependence of Mrs is much weaker than that of Hc. The parameters n and k show a small but systematic fall in values as temperature rises, but may be acceptably constant to furnish analytic functions for physical models of more complex magnetic properties such as thermoremanent magnetization or domain dynamics. The temperature dependence of Hc below room temperature is weaker than that above, possibly due to an increasing single-ion contribution to magnetocrystalline anisotropy. The inferred temperature dependence of magnetocrystalline anisotropy above room temperature up to about 250°C suggests that temperature-induced expulsion or nucleation of domain walls is not expected in this temperature range. The temperature dependence of Mrs and Hc can be expressed as (1 - T/Tc)q where q shows a small but systematic fall as particle size increases in the range 1-30μm. The several properties of the finest, monodomain, fraction (
单斜磁黄铁矿Fe7S8细粒磁滞特性
研究了合成Fe7S8在1 ~ 30μm范围内分离成8个粒径组的磁滞特性。在-196℃~约260℃之间,饱和等温剩余物(Mrs)和矫顽力(Hc)均可表示为粒径(L)的解析函数,形式为(Mrs, Hc)∝L-n或(Mrs, Hc)∝exp(-kL1+2),但Mrs对粒径的依赖性远弱于Hc。随着温度的升高,参数n和k的值呈现出小而系统的下降,但可以接受为更复杂的磁性物理模型(如热磁化或域动力学)提供解析函数的常数。室温下Hc的温度依赖性较弱,可能是由于单离子对磁晶各向异性的贡献增加。推断出的磁晶各向异性在室温以上至约250℃时的温度依赖性表明,在该温度范围内,温度诱导的畴壁排出或成核是不可能的。Mrs和Hc的温度依赖性可以表示为(1 - T/Tc)q,其中在1 ~ 30μm范围内,随着粒径的增大,q呈现出小而系统的下降。精细、单域、分数(
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