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首页> 外文期刊>Physical chemistry chemical physics: PCCP >An empirical model for magnetic field dependent resistivity and magnetoresistance in manganites: application on polycrystalline charge-ordered La0.4Gd0.1Ca0.5MnO3
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An empirical model for magnetic field dependent resistivity and magnetoresistance in manganites: application on polycrystalline charge-ordered La0.4Gd0.1Ca0.5MnO3

机译:锰矿石磁场依赖电阻率和磁阻的实证模型:在多晶电荷有序La0.4gd0.1ca0.5mno3上的应用

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摘要

In this paper, we have investigated the electrical and magnetic response of a La0.4Gd0.1Ca0.5MnO3 polycrystalline sample. This sample seems to exhibit fascinating phenomena like charge ordering, magnetic phase separation, training effects and kinetic arrest. It also shows colossal values of negative magnetoresistance (similar to 91.7% at 96 K under 1 T applied magnetic field), which raises the possibility of using this sample for technological applications. We have also proposed, in this work, a new empirical model to describe the evolution of resistivity and magnetoresistance as a function of magnetic field. This model was successfully tested on the La0.4Gd0.1Ca0.5MnO3 sample in spite of its complicated magnetic behavior, which suggests the use of this model for other magnetic samples in order to check its validity.
机译:在本文中,我们研究了LA0.4GD0.1CA0.5MNO3多晶样品的电响应。 该样品似乎表现出令人欣慰的现象,如充电订购,磁相分离,培训效果和动力骤动。 它还显示了负磁阻的巨大值(类似于96 k下的96 k下的96 k下施加磁场),这提高了使用该样品进行技术应用的可能性。 在这项工作中,我们还提出了一种新的经验模型,以描述电阻率和磁阻的演变作为磁场的函数。 该模型在La0.4GD0.1CA0.5MNO3样品上成功测试,尽管其复杂的磁性行为,这表明使用该模型用于其他磁性样品以检查其有效性。

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