论文标题

Griffiths阶段的演变和LA1-XPBXMNO3+-y固体溶液的临界行为

Evolution of Griffiths Phase and Critical Behaviour of La1-xPbxMnO3+-y Solid Solutions

论文作者

Ghorai, Sagar, Ivanov, Sergey A., Skini, Ridha, Svedlindh, Peter

论文摘要

通过固态反应方法制备了多晶LA1-XPBXMNO3+-y(x = 0.3,0.35,0.4)实心溶液,并研究了其磁性。 X射线粉末衍射模式的Rietveld细化表明,所有样品都是单相,并用R-3C空间组的菱形结构结晶。对于所有材料,都观察到了第二阶顺磁性到铁磁相变。从逆敏感性的温度依赖性确定的Griffith阶段(GP)通过增加磁场抑制,并显示出对A位置化学替代的显着依赖性。使用固有的磁场数据研究了化合物的临界行为。临界指数(\ b {eta},γ和δ)接近所有三种化合物的平均场近似值。观察到的平均场类似行为是GP的结果和铁磁簇的形成。远程铁磁顺序是由于铁磁簇之间的远距离相互作用而建立的。根据等温熵变化研究了磁电效应。我们的研究表明,由于其较高的相对冷却能力(在5 t场,在5 t场的258 j/kg)和室温附近的磁相过渡,因此具有最低化学替代物(x = 0.3)的材料(在三种化合物中)具有最高电位(在三种化合物中)。

Polycrystalline La1-xPbxMnO3+-y (x = 0.3, 0.35, 0.4) solid solutions were prepared by solid state reaction method and their magnetic properties have been investigated. Rietveld refinement of X-ray powder diffraction patterns showed that all samples are single phase and crystallized with the rhombohedral structure in the R-3c space group. A second order paramagnetic to ferromagnetic phase transition was observed for all materials. The Griffiths phase (GP), identified from the temperature dependence of the inverse susceptibility, was suppressed by increasing magnetic field and showed a significant dependence on A-site chemical substitution. The critical behaviour of the compounds was investigated near to their Curie temperatures, using intrinsic magnetic field data. The critical exponents (\b{eta}, γ and δ) are close to the mean-field approximation values for all three compounds. The observed mean-field like behaviour is a consequence of the GP and the formation of ferromagnetic clusters. Long-range ferromagnetic order is established as the result of long-range interactions between ferromagnetic clusters. The magnetocaloric effect was studied in terms of the isothermal entropy change. Our study shows that the material with the lowest chemical substitution (x = 0.3) has the highest potential (among the three compounds) as magnetic refrigerant, owing to its higher relative cooling power (258 J/kg at 5 T field) and a magnetic phase transition near room temperature.

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