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Ensemble magnetic behavior of interacting CoFe nanoparticles

机译:相互作用CoFe纳米粒子的集合磁行为

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Ferromagnetic nanoparticles in the 10-14 nm size range are examined for their size and interaction dependent magnetic properties. From X-ray magnetic circular dichroism the orbital-to-spin magnetic moment ratio is determined and found to decrease significantly with particle size. This is in accordance with previous complementary studies on smaller particles and highlights the difficulty of fitting to a simple core-shell model. Vibrating sample magnetometry experiments on samples with more than 1000 particles per square micron show a wide distribution of blocking temperatures from 50 to greater than 650 K. This is attributed to the dipole-dipole magnetic coupling forces between particles. The blocking temperatures show an unexpected negative correlation with increasing particle density.
机译:检查10-14 nm尺寸范围内的铁磁纳米颗粒的尺寸和相互作用相关的磁性。根据X射线磁性圆二色性,确定了轨道与自旋的磁矩比,发现该比随颗粒尺寸而显着降低。这与先前对较小颗粒的补充研究一致,并突出了拟合简单核壳模型的难度。对每平方微米包含1000个以上颗粒的样品进行的振动样品磁力分析实验表明,阻塞温度的分布范围很广,从50 K到大于650K。这归因于颗粒之间的偶极-偶极磁耦合力。粘连温度与增加的颗粒密度显示出意外的负相关。

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