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Anomalous random correlations of force constants on the lattice dynamical properties of disordered Au-Fe alloys

机译:力常数对无序金铁合金晶格动力学性质的异常随机相关性

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摘要

Gold iron (Au-Fe) alloys are of immense interest due to their biocompatibility, anomalous Hall conductivity, and applications in various medical treatments. However, irrespective of the method of preparation, they often exhibit a high level of disorder with properties sensitive to the thermal or magnetic annealing temperatures. We calculate the lattice dynamical properties of Au1-xFex alloys using density functional theory methods where, being multisite properties, reliable interatomic force constant (IFC) calculations in disordered alloys remain a challenge. We follow a twofold approach: (1) an accurate IFC calculation in an environment with nominally zero chemical pair correlations to mimic the homogeneously disordered alloy and (2) a configurational averaging for the desired phonon properties (e.g., dispersion, density of states, and entropy). We find an anomalous change in the IFC's and phonon dispersion (split bands) near x = 0.19, which is attributed to the local stiffening of the Au-Au bonds when Au is in the vicinity of Fe. Other results based on mechanical and thermophysical properties reflect a similar anomaly: Phonon entropy, e.g., becomes negative below x = 0.19, suggesting a tendency for chemical unmixing, reflecting the onset of a miscibility gap in the phase diagram. Our results match fairly well with reported data wherever available.
机译:金铁(Au-Fe)合金由于其生物相容性,霍尔电导率异常以及在各种医学治疗中的应用而备受关注。但是,不管其制备方法如何,它们通常表现出高水平的无序性,其性质对热或磁退火温度敏感。我们使用密度泛函理论方法计算Au1-xFex合金的晶格动力学特性,其中,作为多点性能,无序合金中可靠的原子间力常数(IFC)计算仍然是一个挑战。我们采用双重方法:(1)在名义上化学对相关性为零以模仿均质无序合金的环境中进行精确的IFC计算,以及(2)所需声子性质(例如,色散,态密度和熵)。我们发现x = 0.19附近的IFC和声子色散(分裂带)出现异常变化,这是由于Au在Fe附近时Au-Au键的局部硬化。基于机械和热物理性质的其他结果也反映出类似的异常现象:声子熵,例如在x = 0.19以下变为负值,表明化学分解的趋势,这反映了相图中互溶间隙的出现。只要有可用的结果,我们的结果就与报告的数据非常匹配。

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