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系统研究了Mn位替代的La2/3Ca2/3Mn0.9Co0.1O3的电输运特性和磁诱导行为,这里替代Co离子的多价态对应有多重的自旋态变化.发现了存在于Co替代La2/3Ca1/3Mn0.9Co0.1O3电输运行为上的双峰效应,具体表现为除了居里温度Tc附近电阻-温度曲线的金属-绝缘(M-I)转变行为(TMIH约为182K)以外,在低温区域电输运行为出现二次性的类M-I转变现象(TMIL乱约为124K).通过对外加磁场下输运特性的研究表明,随外加磁场的增加,电阻-温度曲线整体呈现降低行为,即表现为负的磁电阻效应;同时,高温区峰值温度TMIH向高温区移动,这与传统CMR锰氧化物M-I转变特性完全一致;而低温峰值温度了TMIL则几乎不变,即TMIL表现出某种磁场无关的特征.结合样品磁特性测量结果,我们发现,除了场冷(FC)和零场冷(ZFC)曲线的分叉现象可能证明Co替代诱导Mn位的磁无序而导致体系出现不均匀的铁磁/反铁磁(FM/AFM)团簇外,在低温峰值温度TMIL乱附近没有观察到磁性异常变化.对照对Cu和Cr等相关体系的类似研究,证明这种低温二次M-I转变可能与Co替代导致体系的氧缺陷有关.

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