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Low-temperature magnetic behavior of ball-milled copper ferrite

机译:球磨铜铁氧体的低温磁行为

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We present a study on magnetic properties of CuFe_2O_4 nanoparticles, produced by high-energy ball milling. The series of samples obtained, with average particle size ranging from 61 nm to 9 nm, display increasing relaxation effects at room temperature. Irreversibility of the magnetization and shifts to negative fields in the hysteresis loops are observed below T_F approx approx 55 K, indicating unidirectional magnetic anisotropy in milled samples. These features could be explanined by assuming the formation of a spin-disordered surface layer, which is exchange-coupled to the ferrimagnetic core. The temperature depenence of average hyderfine field, saturation mangetization and coercive field shows a change of slope at T_f, indicating the spin freezing of the disordered phase at F_f.
机译:我们目前对高能球磨生产的CuFe_2O_4纳米粒子的磁性进行了研究。获得的一系列样品的平均粒径在61nm至9nm范围内,在室温下显示出增加的弛豫效果。在低于大约55 K的T_F处观察到磁化的不可逆性和向磁滞回线中的负磁场的偏移,表明铣削样品中的单向磁各向异性。这些特征可以通过假设形成自旋无序的表面层来解释,该表面层交换耦合到亚铁磁芯。平均Hyderfine场,饱和磁化强度和矫顽场的温度依赖性显示T_f处的斜率发生变化,表明F_f处无序相的自旋冻结。

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