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Reply to 'Comment on 'Coexistence of ferromagnetism and superconductivity in Sn nanoparticles' '

机译:答复“关于'锡纳米粒子中铁磁性和超导性的共存'的评论”

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In this Reply we show that the thermal characteristic of μ_p increases with increasing temperature remains when size distribution of the nanoparticle assembly has been accounted for. In addition, the antiferromagneti-clike or ferrimagneticlike spin configuration is also required to understand the two-component hysteresis observed in the M(H_a) curves. The appearance of hysteresis in the low H_a regime [Fig. 4 of W.-H. Li, C.-W. Wang, C.-Y. Li, C. K. Hsu, C. C. Yang, and C.-M. Wu, Phys. Rev. B 77, 094508 (2008)] indicates the existence of a net spontaneous moment in the nanoparticle, whereas the enlarged hysteresis at the high H_a regime can be the results of the occurrence of spin reorientation of the core and surface macromoments triggered by the applied magnetic field.
机译:在本回复中,我们表明,当考虑了纳米颗粒组件的尺寸分布时,μ_p的热特性随温度升高而增加。另外,还需要抗铁磁类似的或亚铁磁性的自旋构型,以了解在M(H_a)曲线中观察到的两组分磁滞现象。在低H_a状态下出现磁滞现象[图。 W.-H. 4。李长武王春雨Li,C.K. Hsu,C.C. Yang,和C.-M.吴物理Rev. B 77,094508(2008)]指出纳米粒子中存在净自发矩,而在高H_a态下出现的滞后增大可能是由于核素和表面宏观矩发生自旋重取向的结果。施加的磁场。

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