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The effect of surface spin disorder on the magnetism of gamma-Fe2O3 nanoparticle dispersions

机译:表面自旋无序对γ-Fe2O3纳米颗粒分散体磁性的影响

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The nanomagnetism of monodisperse 7 nm gamma-Fe2O3 nanoparticles exhibits unique features due to a significant amount of surface spin disorder. To correctly characterize the superparamagnetism of a dilute dispersion requires including the effects of the magnetic anisotropy and a shell of disordered spins surrounding the ordered core. The nanoparticle shell's disordered spin structure is exchange coupled to that of the ordered core. This enables an exchange bias loop shift, Hex, when the nanoparticle dispersion is field cooled. The surface spin disorder also leads to an unusual exponential-like decrease of the nanoparticle's total saturation magnetization with increasing temperature.
机译:由于大量的表面自旋紊乱,单分散7 nmγ-Fe2O3纳米颗粒的纳米磁性表现出独特的特征。为了正确地表征稀疏分散体的超顺磁性,需要包括磁各向异性的影响以及围绕有序磁芯的无序自旋壳。纳米粒子壳的无序自旋结构交换耦合到有序核的交换结构。当纳米颗粒分散体被现场冷却时,这使得交换偏置环移位Hex成为可能。表面自旋失调还导致纳米粒子的总饱和磁化强度随温度的升高而出现异常的指数状下降。

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