首页> 外文期刊>The European physical journal, B. Condensed matter physics >Solid-state interfacial reaction and asymmetric growth of amorphous interlayers in Ni/Nb multilayers. Molecular-dynamics simulation together with experiments
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Solid-state interfacial reaction and asymmetric growth of amorphous interlayers in Ni/Nb multilayers. Molecular-dynamics simulation together with experiments

机译:Ni / Nb多层膜中的固相界面反应和非晶中间层的不对称生长。分子动力学模拟与实验

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摘要

An embedded-atom potential for the Ni-Nb system is constructed using physical properties obtained from first-principle calculations. Employing the potential, molecular-dynamics simulations are performed to study the interfacial reaction in Ni/Nb multilayers upon annealing at medium temperatures. The results show that a present disordered interlayer, which is obtained by exchanging Ni and Nb atoms in the interfaces, may act as a nucleus of amorphous phase and is usually necessary for amorphization. It is found that the growth of the amorphous interlayer is in a planar mode and exhibits an asymmetric behavior due to a faster consumption of Ni than that of the Nb layer; this is also indeed observed experimentally. Moreover, performing a simulation with solid solution models, it is found that the Nb lattice can accommodate a large number of Ni atoms and still retain a crystalline structure, while a small amount of Nb atoms induce a spontaneous decay of the Ni lattice. Such differences in solid solubility is thought to be the physical origin of the asymmetric growth observed in experiments and simulations.
机译:使用从第一原理计算中获得的物理特性,可以构建Ni-Nb系统的嵌入原子电势。利用这种潜力,进行了分子动力学模拟,以研究在中等温度下退火后Ni / Nb多层膜中的界面反应。结果表明,通过交换界面中的Ni和Nb原子获得的当前无序中间层可能充当非晶相的核,通常是非晶化所必需的。发现非晶夹层的生长处于平面模式并且由于Ni的消耗比Nb层的消耗快而表现出不对称行为。实际上也可以通过实验观察到。此外,通过使用固溶模型进行仿真,发现Nb晶格可以容纳大量的Ni原子,并且仍然保留晶体结构,而少量的Nb原子则导致Ni晶格的自发衰减。固体溶解度的这种差异被认为是在实验和模拟中观察到的不对称生长的物理原因。

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