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Band Jahn Teller Like Distortion In TiPd Shape Memory Alloy On Addition Of Magnetic Impurity Co

机译:BAND JAHN TEAKER等拖曳形状记忆合金的失真,添加磁杂质CO

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In this paper, we have reported the electronic structure and magnetic properties of TiPd alloyed with two different concentrations of magnetic impurity Co in the framework of density functional theory using the full potential linearized augmented plane wave method. The prominent high temperature shape memory alloy (HTSMA)-TiPd, undergoes martensitic transformation from the parent B2 (cubic) phase to the product B19 (orthorhombic) phase. Among the two configurations [Ti(Pd,Co) and (Ti,Co)Pd] considered, Co is found to prefer Ti sublattice more than the Pd sublattice from the formation energy calculations for both B2 and B19 phases. The addition of Co induced magnetic behaviour in the compounds investigated. The densities of states (total, site and angular momentum decomposed) are studied in detail. Band Jahn Teller (BJT) effects are used to understand structural instability in solids. In BJT, the peak in the vicinity of Fermi level, in the spin down channel of the high symmetry phase splits or broadens on deformation. A band Jahn Teller like broadening is observed in the density of states curve of Ti__(25)Pd_(50)Co_(25). This broadening is accompanied by a decrease in electronic energy and number of states at Fermi level. BJT effect is an accompanying feature of martensitic transformation.
机译:在本文中,我们已经报道了用全电位线性化增强平面波法在密度函数理论框架中具有两种不同浓度的磁杂质CO的倾斜的电子结构和磁性。突出的高温形状记忆合金(HTSMA)-TIPD,从母体B2(立方)相对产物B19(正交)相的马氏体转化。在考虑的两种配置中[TI(PD,CO)和(TI,CO)PD]中,发现CO比B2和B19阶段的形成能量计算比PD子分组更喜欢TI子分子。在研究的化合物中添加CO诱导的磁性行为。详细研究了状态的密度(总,遗址和分解)。乐队JAHN Teller(BJT)效果用于了解固体中的结构不稳定。在BJT中,在FERMI水平附近的峰值,在高对称相分裂的旋转通道中,变形变形。在TI __(25)PD_(50)CO_(25)的状态曲线的密度中观察到凸起的jahn讲述。这种拓宽伴随着费米水平的电子能源和州数量的减少。 BJT效应是马氏体转换的附带特征。

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