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首页> 外文期刊>RSC Advances >Magnetic and magnetocaloric properties of La0.55Bi0.05Sr0.4CoO3 and their implementation in critical behaviour study and spontaneous magnetization estimation
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Magnetic and magnetocaloric properties of La0.55Bi0.05Sr0.4CoO3 and their implementation in critical behaviour study and spontaneous magnetization estimation

机译:La0.55Bi0.05Sr0.4CoO3的磁热磁特性及其在临界行为研究和自发磁化强度估计中的实现

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摘要

In this work, we present the results of the magnetic, critical, and magnetocaloric properties of the rhombohedral-structured La _(0.55) Bi _(0.05) Sr _(0.4) CoO _(3) cobaltite. Based on the modified Arrott plot, Kouvel–Fisher, and critical isotherm analyses, we obtained the values of critical exponents ( β , γ , and δ ) as well as Curie temperature ( T _(C) ) for the investigated compound. These components were consistent with their corresponding values and they were validated by the Widom scaling law and scaling theory. The obtained critical exponents were close to the theoretical prediction of the mean-field model values, revealing the characteristic of long-range ferromagnetic interactions. The magnetic entropy, heat capacity, and local exponent n ( T , μ _(0) H ) of the La _(0.55) Bi _(0.05) Sr _(0.4) CoO _(3) compound collapsed to a single universal curve, confirming its universal behaviour. The estimated spontaneous magnetization value extracted through the analysis of the magnetic entropy change was consistent with that deduced through the classical extrapolation of the Arrott curves. Thus, the magnetic entropy change is a valid and useful approach to estimate the spontaneous magnetization of La _(0.55) Bi _(0.05) Sr _(0.4) CoO _(3) .
机译:在这项工作中,我们介绍了菱面体结构的La _(0.55)Bi _(0.05)Sr _(0.4)CoO _(3)钴铁矿的磁,临界和磁热性质的结果。基于修正的Arrott图,Kouvel-Fisher和临界等温线分析,我们获得了所研究化合物的临界指数(β,γ和δ)以及居里温度(T _(C))。这些成分与其对应的值一致,并已通过Widom缩放定律和缩放理论进行了验证。所获得的临界指数接近于平均场模型值的理论预测值,揭示了远距离铁磁相互作用的特征。 La _(0.55)Bi _(0.05)Sr _(0.4)CoO _(3)化合物的磁熵,热容和局部指数n(T,μ_(0)H)塌陷为一条通用曲线,确认其普遍行为。通过分析磁熵变而提取的估计自发磁化值与通过Arrott曲线的经典外推法得出的估计值一致。因此,磁熵变是估计La _(0.55)Bi _(0.05)Sr _(0.4)CoO _(3)的自发磁化的有效方法。

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