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Martensite Transition and Microscopic Magnetism of Epitaxial Ni2MnGa Films

机译:Ni2MnGa外延薄膜的马氏体转变和微观磁性

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A magnetically induced shape memory effect in Ni_2MnGa results in huge magnetostrictive effects of several percent. Using x-ray absorption spectroscopy (XAS) and magnetic circular dichroism (XMCD) we investigated element specific magnetic moments and electronic structure of single crystalline, (110) oriented Ni_2MnGa films on a-plane Al_2O_3 substrates in the austenite and martensite state. The structural phase transition of the samples is evident from temperature dependent x-ray diffraction and magnetization measurements. The Ni XAS differ significantly for temperatures above and below the martensite transition in agreement with published ab-initio calculations. Using XAS in transmission geometry on our thin film samples we observe the corresponding reduction of the absorption feature as predicted by theoretical calculations. The XMCD analysis shows the orbital contribution of the Ni electrons to be responsible for the magnetic anisotropy.
机译:Ni_2MnGa中的磁感应形状记忆效应导致百分之几的巨大磁致伸缩效应。我们使用x射线吸收光谱(XAS)和圆圆二色性(XMCD)研究了在奥氏体和马氏体状态的a平面Al_2O_3衬底上的单晶(110)取向Ni_2MnGa薄膜的元素比磁矩和电子结构。样品的结构相变从与温度相关的X射线衍射和磁化强度测量中可以明显看出。 Ni XAS对于高于和低于马氏体转变的温度存在显着差异,这与已公布的从头计算法一致。在薄膜样品的透射几何结构中使用XAS,我们观察到了吸收量的相应减少,这是理论计算所预测的。 XMCD分析表明,Ni电子的轨道贡献是引起磁各向异性的原因。

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