Enhanced Caloric Effect Induced By Magnetoelastic Coupling In Nimngacu Heusler Alloys: Experimental Study And Theoretical Analysis (Vol 96, 224105, 2017)

PHYSICAL REVIEW B(2018)

引用 10|浏览12
暂无评分
摘要
On the basis of a phenomenological Landau model combined with comprehensive experimental studies, the magnetostructural transition behavior and field induced caloric effects for NiMnGaCu Heusler alloys have been investigated. In Ni50Mn25-xGa25Cux alloys with x = 5.5, 6, and 6.5, both magnetocaloric entropy change (Delta S) and elastocaloric temperature change (Delta T) increase with the increment of Cu content. The maximum Delta S of 1.01 J/molK and Delta T of 8.1 K are obtained for the alloy with x = 6.5. In order to explore the physical origin behind the large caloric effect, here we quantitatively propose a crucial coefficient of magnetoelastic coupling (kappa) over tilde. by utilizing a thermodynamic formalism within the framework of the Landau approach. It has been verified that the enhancement of the strength of magnetoelastic coupling between lattice and magnetic freedoms results in the increased caloric response for NiMnGaCu alloys. Thus, the strengthened coupling of the magnetoelastic effect can be considered as an effective way to improve the caloric performance for these alloys having the same sign of magnetic and elastic entropy changes contributed to the total caloric effect.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要