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Critical behavior and magnetocaloric effect in La0.67Sr0.33MnO3.01 compounds

机译:La0.67SR0.33MNO3.01化合物的临界行为和磁热效应

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The polycrystalline La0.67Sr0.33MnO3.01 sample was synthesized by standard solid state technique. Crystal structure of sample belongs to rhombohedral system with space group R (3) over barc. The parameters are a = 0.55003(2) and c = 1.33753(4) nm for indexing in hexagonal system and a' = 0.54689 nm and alpha = 60.38 degrees for indexing in rhombohedral system. In order to obviously reveal the magnetic interaction we study the critical behavior by the modified Arrott plot, the Kouvel-Fisher method and the critical isotherm technique. Three main critical exponents, beta, gamma and delta, are derived from different three methods mentioned above. The three critical exponents obey the Widom relation and are able to collapse the different isothermal magnetization data into two branches below and above T-c based on the single scaling equation M(H, epsilon) = epsilon(beta)f (+/-) (H/epsilon(beta+gamma)). The critical exponents, beta and gamma, are on the verge of the theoretical prediction of a mean-field model, implying the existence of long-range magnetic interaction with magnetic exchange distance decaying as J(r) approximate to r(-4.)(57). The exponent n in the power relation Delta S-m proportional to H-n dependence of temperature increases with temperature decreasing and approaches to 1 well below T c and increases with temperature increasing and approaches to 2 well above T-c. Near T-c the n = 0.669 is very close to 2/3. These data support that the magnetic interaction can assign to mean-field model. The RCP increases with applied magnetic field and is about 40 J/kg under 1.2 T applied field.
机译:通过标准固态技术合成多晶LA0.67SR0.33MNO3.01样品。样品的晶体结构属于具有空间组R(3)的Rhombohedral系统。参数是= 0.55003(2)和C = 1.33753(4)Nm,用于六边形系统中的分度,A'= 0.54689nm和alpha = 60.38度,用于在菱体系统中索引。为了显然揭示磁相互作用,我们研究了改进的Arrott Plot,Kouvel-Fisher方法和临界等温技术的临界行为。三个主要的关键指数,β,γ和δ,来自上述不同的三种方法。三个临界指数遵守氟多普诺关系,并且能够基于单缩放方程(H,Epsilon)= epsilon(+/-)(H. / epsilon(β+γ))。临界指数,β和伽马,濒临临近平均场模型的理论预测,暗示与磁交换距离衰减的远程磁交互的存在,衰减为j(r)近似到r(-4。) (57)。功率关系中的指数n与温度的H-N依赖性成比例,随着温度降低而增加,并在低于T C的良好接近,并随温度的增加并且越来越高于T-C良好。近t-c n = 0.669非常接近2/3。这些数据支持磁交互可以分配给平均字段模型。 RCP随着施加的磁场增加,约为4.2吨施加的场。

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