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Morphological and crystallographic orientation of hematite spindles in an applied magnetic field

机译:形态和晶体取向的赤铁矿纺锤波的应用磁场

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摘要

The magnetic response of spindle-shaped hematite (-Fe2O3) nanoparticles was investigated by simultaneous small-angle and wide-angle X-ray scattering (SAXS/WAXS) experiments. The field-dependent magnetic and nematic order parameters of the magnetic single-domain nanospindles in a static magnetic field are fully described by SAXS simulations of an oriented ellipsoid with the implemented Langevin function. The experimental scattering intensities of the spindle-like particles can be modeled simply by using the geometrical (length, radius, size distribution) and magnetic parameters (strength of magnetic field, magnetic moment) obtained from isotropic SAXS and macroscopic magnetization measurements, respectively. Whereas SAXS gives information on the morphological particle orientation in the applied field, WAXS texture analysis elucidates the atomic scale orientation of the magnetic easy direction in the hematite crystal structure. Our results strongly suggest the tendency for uniaxial anisotropy but indicate significant thermal fluctuations of the particle moments within the hematite basal plane.
机译:纺锤状赤铁矿的磁响应研究了纳米颗粒(-Fe2O3)同时小角度和广角x射线散射(粉煤灰/蜡)实验。field-dependent磁场和向列顺序参数的磁单极nanospindles在静态磁场完全被一枝模拟一个面向椭球的朗之万函数实现。实验的散射强度spindle-like粒子可以仅仅通过建模使用几何(长度、半径的大小分布)和磁参数(强度的磁场,磁矩)获得各向同性一枝和宏观磁化分别测量。粒子形态的信息定位在应用领域,蜡质感分析论述了原子尺度取向的磁赤铁矿中简单的方向晶体结构。倾向于单轴各向异性,但表示显著的热粒子的波动时刻在赤铁矿底面。

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