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Nanophase Separation and Magnetic Spin Glass in Nd_(2/3)Ca_(1/3)MnO_3

机译:ND_(2/3)CA_(1/3)MNO_3中的纳米相分离和磁性旋转玻璃

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A study of the low temperature magnetic state of polycrystalline colossal magnetoresistance perovskite Nd_(2/3)Ca_(1/3)MnO_3 has been carried out. The data obtained, such as strongly divergent ZFC and FC static magnetizations and frequency dependent ac susceptibility, are evident of the glassy magnetic state of the system. Well defined maxima Tmax in the in-phase linear ac susceptibility χ' curves were observed, indicating a spin-glass transition. Clear frequency dependence of the cusp temperature Tmax was found. The frequency dependence of Tmax was successfully analyzed by the dynamical scaling theory of a three-dimensional spin glass. Slow relaxation process and variety of relaxation times found imply a cluster glass magnetic state of the compound at low temperatures rather than a canonical spin glass state. The cluster glass state, accompanied by the multiple magnetic transitions of Nd_(2/3)Ca_(1/3)MnO_3, might exist due to the competing interaction between the FM clusters and the AFM matrix induced by the complex nanophase segregated state of the compound.
机译:已经进行了对多晶巨磁阻钙钛矿Nd_(2/3)Ca_(1/3)MnO_3的低温磁状态的研究。获得的数据,例如强烈发散的ZFC和FC静磁化和频率依赖的AC敏感性,是系统的玻璃磁状态明显。观察到在相位线性交流磁性磁敏性中明确的Maxima Tmaxχ'曲线,表明旋转玻璃化转变。发现了CUSP温度Tmax的透明频率依赖性。通过三维旋转玻璃的动态缩放理论成功分析了Tmax的频率依赖性。放松过程和各种弛豫时间发现暗示了低温下的化合物的簇玻璃磁力状态而不是典型的旋转玻璃状态。由于FM集群与由复杂的纳米分离状态诱导的AFM矩阵之间的竞争相互作用,伴随着ND_(2/3)CA_(1/3)MNO_3的多个磁转换的簇玻璃状态可能存在化合物。

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