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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Temperature and concentration dependence of the effective pair interaction parameters in Ni-Pd from high-energy x-ray diffuse scattering
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Temperature and concentration dependence of the effective pair interaction parameters in Ni-Pd from high-energy x-ray diffuse scattering

机译:Ni-Pd中高能X射线扩散散射中有效对相互作用参数的温度和浓度依赖性

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摘要

The atomic interaction potential between different alloy components is encoded in the diffuse scattering caused by configurational short-range order and lattice distortions in the disordered phase. We performed in situ measurements of the x-ray diffuse scattering on macroscopic Ni_(55)Pd_(45) and Ni_(25)Pd_(75) single crystals in the temperature range from 20℃ up to 920℃. We describe in detail the experiments and the data analysis where we use a formalism based on the spherical model and the Kanzaki-force concept in combination with a simulated annealing algorithm. We demonstrate that one single measurement is sufficient to retrieve the effective pair interaction potentials as well as thermal and elastic properties of the system. With only seven independent and physically motivated parameters we are able to describe short-range-order correlations, lattice distortions, and thermal parameters in a large temperature and concentration range.
机译:不同合金成分之间的原子相互作用势被编码在由无序相中的构型短程有序和晶格畸变引起的扩散散射中。我们在20℃至920℃的温度范围内对宏观的Ni_(55)Pd_(45)和Ni_(25)Pd_(75)单晶进行了x射线漫散射的原位测量。我们详细描述了实验和数据分析,其中我们使用了基于球形模型和Kanzaki力概念的形式主义,并结合了模拟退火算法。我们证明了一个单独的测量足以检索有效的对相互作用势以及系统的热和弹性性质。仅需七个独立且具有物理动机的参数,我们就可以描述在较大温度和浓度范围内的短程相关,晶格畸变和热参数。

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