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Magnetocaloric effect and critical magnetic behavior in Ni-rich Ni-Mn-Sn full Heusler alloy

机译:Ni-Mn-Mn-Sn完全Heusler合金中的磁热效应和临界磁力行为

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In search of low-cost, hysteresis-free, broad working temperature magnetocaloric materials, Ni_(2.24)Mn_(0.76)Sn Heusler alloy has been prepared by the conventional arc melting method. The XRD pattern reveals that the sample is crystallized in Fm 3 m space group in L2_1 cubic symmetry. The Maxwell's equation is employed on magnetic isotherms to determine the change in magnetic entropy. This alloy gives a reasonable magnetocaloric effect (ΔS_M= 1.25 J/Kg-K and RCP = 83.87 J/Kg at 3 T) with a large working temperature (67 K at 3 T) near the room temperature. Critical exponents have been calculated using modified Arrott plot, Kouvel-Fisher plot, and critical isotherm analysis to understand the nature of phase transition and exchange interaction, causing magnetic ordering in the system. The values of critical exponents (β = 0.454 ± 0.015, γ = 1.145 ± 0.035, δ = 3.522 ±0.009) and range of exchange interaction (σ= 1.698) fall in between long-range mean-field theory and short-range 3D Heisenberg model, indicating the complex nature of exchange interaction.
机译:在寻找低成本,无滞后,宽的工作温度磁热材料,Ni_(2.24)Mn_(0.76)Sn Heusler合金是通过常规电弧熔化方法制备的。 XRD图案显示样品在L2_1立方称对称的FM 3M空间组中结晶。 Maxwell的等式用于磁性等温物上,以确定磁熵的变化。该合金具有合理的磁热效应(ΔS_M= 1.25J / kg-k和RCP = 83.87J / kg,在室温附近具有大的工作温度(67 k)。使用改进的Arrott Plot,Kouvel-Fisher图和关键等温线分析来计算临界指数,以了解相变和交换相互作用的性质,在系统中引起磁性排序。临界指数的值(β= 0.454±0.015,γ= 1.145±0.035,Δ= 3.522±0.009)和交换相互作用(σ= 1.698)的范围落入远程平均场理论和短程3D Heisenberg之间模型,表明交换交互的复杂性质。

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