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Free energy calculation of mechanically unstable but dynamically stabilized bcc titanium

机译:机械不稳定但动态稳定的密晶钛的自由能计算

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摘要

The phase diagram of numerous materials of technological importance features high-symmetry high-temperature phases that exhibit phonon instabilities. Leading examples include shape-memory alloys, as well as ferroelectric, refractory, and structural materials. The thermodynamics of these phases have proven challenging to handle by atomistic computational thermodynamic techniques due to the occurrence of constant anharmonicity-driven hopping between local low-symmetry distortions, while maintaining a high-symmetry time-averaged structure. To compute the free energy in such phases, we propose to explore the system's potential-energy surface by discrete sampling of local minima by means of a lattice gas Monte Carlo approach and by continuous sampling by means of a lattice dynamics approach in the vicinity of each local minimum. Given the proximity of the local minima, it is necessary to carefully partition phase space by using a Voronoi tessellation to constrain the domain of integration of the partition function in order to avoid double counting artifacts and enable an accurate harmonic treatment near each local minima. We consider the bcc phase of titanium as a prototypical example to illustrate our approach.
机译:具有重要技术意义的多种材料的相图具有高对称性高温相,这些相具有声子不稳定性。领先的例子包括形状记忆合金,以及铁电材料,耐火材料和结构材料。这些相的热力学已被证明难以用原子计算热力学技术处理,这是由于局部低对称畸变之间存在恒定的非谐波驱动跳变,同时又保持了高对称时间平均结构。为了计算此类相中的自由能,我们建议通过晶格气体蒙特卡洛方法对局部极小值进行离散采样,并通过在每个相近区域使用晶格动力学方法进行连续采样来探索系统的势能面局部最小值。给定局部极小值的接近度,有必要通过使用Voronoi细分来仔细划分相空间,以约束分配函数的积分域,以避免重复计算伪影,并在每个局部极小值附近实现精确的谐波处理。我们认为钛的bcc相是一个典型的例子来说明我们的方法。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第6期|064101.1-064101.10|共10页
  • 作者单位

    Box D, School of Engineering, Brown University, 184 Hope street, Providence, Rhode Island 02912, USA;

    Box D, School of Engineering, Brown University, 184 Hope street, Providence, Rhode Island 02912, USA;

    Box D, School of Engineering, Brown University, 184 Hope street, Providence, Rhode Island 02912, USA;

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