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首页> 外文期刊>Journal of Physics. Condensed Matter >Role of random magnetic anisotropy on the valence, magnetocaloric and resistivity properties in a hexagonal Sm2Ni0.87Si2.87 compound
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Role of random magnetic anisotropy on the valence, magnetocaloric and resistivity properties in a hexagonal Sm2Ni0.87Si2.87 compound

机译:随机磁各向异性在六边形SM2NI0.87SI2.87化合物中的价值,磁热和电阻率特性的作用

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In this work, we report the effect of random magnetic anisotropy (RMA) on the valence, magnetocaloric and resistivity properties in a glassy intermetallic material Sm2Ni0.87Si2.87. On the basis of detailed studies on the valence band and core level electronic structure, we have established that both the Sm3+ and Sm2+ ions are present in the system, suggesting the compound to be of mixed valence in nature. The significant observation of positive magnetic entropy change in zero-field cooled measurement has been argued due to the presence of RMA that develops due to local electronic environmental variations between the rare-earth ions in the system. The quantum interference effect caused by the elastic electron-electron interaction is responsible for the resistivity upturn at low-temperature for this disordered metallic conductor.
机译:在这项工作中,我们在玻璃金属间材料中报告了随机磁各向异性(RMA)对玻璃金属间质材料中的价,磁热和电阻性特性的影响SM2NI0.87SI2.87。 在对价带和核心等级电子结构的详细研究的基础上,我们已经确定了SM3 +和SM2 +离子存在于系统中,表明化合物在自然界中具有混合的价值。 由于RMA的存在,所讨论了零磁熵变化在零场冷却测量中的显着观察,这是由于系统中稀土离子之间的局部电子环境变化而产生的RMA。 由弹性电子相互作用引起的量子干涉效应是对该无序金属导体的低温电阻率UPTURE负责。

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