论文标题

群集玻璃的过渡和放松在随机尖晶石COGA2O4中

Cluster glass transition and relaxation in random spinel CoGa2O4

论文作者

Naka, T., Nakane, T., Ishii, S., Nakayama, M., Ohmura, A., Ishikawa, F., de Visser, A., Abe, H., Uchikoshi, T.

论文摘要

我们报告了随机尖晶石磁铁COGA2O4中的磁性特性。 COGA2O4的X射线衍射曲线的Rietveld分析表明,CO和GA离子在三色体A位点和八面体B-位置随机分布在三次尖晶石结构中。 COGA2O4在TSG = 8.2 K处表现出旋转玻璃的跃迁,这通过测量DC和AC-舒张性和热量磁化(TRM)的测量得到了证实,该磁力强化(TRM)在TSG以下发展。从COGA2O4的冷冻温度TF的频率依赖性,可以表明放松时间遵循Vogel-Fulcher定律。磁熵大大降低,可能是因为即使在TSG处也会发展出磁簇的形成。 TSG时TRM的松弛率大大提高,并且在TSG上方和下方迅速衰减。 TRM的时间过程是通过非指数弛豫形式复制的,例如拉伸指数(Kohlrausch)以及Ogielski和Weron弛豫形式。这种行为普遍显示在玻璃系统中,与这些功能相关的特征参数是合理的。

We report magnetic properties in the random spinel magnet CoGa2O4. Rietveld analysis of the x-ray diffraction profile for CoGa2O4 reveals that the Co and Ga ions are distributed randomly in the tetrahedral A-sites and octahedral B-sites in the cubic spinel structure. CoGa2O4 exhibits a spin-glass transition at TSG = 8.2 K that is confirmed by measurements of the dc- and ac-susceptibilities and thermoremanent magnetization (TRM) that develops below TSG. From the frequency dependence of the freezing temperature Tf for CoGa2O4, it is indicated that the relaxation time follows a Vogel-Fulcher law. Magnetic entropy is considerably reduced, probably because magnetic cluster formation developed even at T > TSG. The relaxation rate of TRM is considerably enhanced at TSG and decays rapidly above and below TSG. The time course of TRM is reproduced by non-exponential relaxation forms, such as a stretched exponential (Kohlrausch) as well as Ogielski and Weron relaxation forms. This behavior is displayed universally in glass systems, and the characteristic parameters associated with these functions were reasonable.

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