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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Melting properties from ab initio free energy calculations: Iron at the Earth's inner-core boundary
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Melting properties from ab initio free energy calculations: Iron at the Earth's inner-core boundary

机译:从头算自由能计算得出的熔化性质:铁在地球内核边界处

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We present a general scheme to accurately determine melting properties of materials from ab initio free energies. This scheme does not require prior fitting of system-specific interatomic potentials and is straightforward to implement. For the solid phase, ionic entropies are determined from the phonon quasiparticle spectra (PQS), which fully account for lattice anharmonicity in the thermodynamic limit. The resulting free energies are nearly identical (within 10 meV/atom) to those from the computationally more demanding thermodynamic integration (TI) approach. For the liquid phase, PQS are not directly applicable and free energies are determined via TI using the Weeks-Chandler-Andersen (WCA) gas as the reference system. The WCA is a simple, short-range, purely repulsive potential with established equation of states. As such, it is an ideal reference for ab initio TI of liquids. We apply this scheme to determine melting properties of hexagonal close-packed (hcp) iron at the Earth's inner core boundary (P = 330 GPa), a subject of great significance in Earth sciences. The important influences of system size and pseudopotentials are carefully analyzed. The results (melting temperature equals 6170 +/- 200 K, latent heat 56 +/- 2 kJ/mol, Clapeyron slope 8.1 +/- 0.2 K/GPa) are consistent with experiments as well as previous calculations.
机译:我们提出了一种从头算自由能准确确定材料的熔融性能的通用方案。该方案不需要事先拟合系统特定的原子间电势,并且易于实现。对于固相,根据声子准粒子光谱(PQS)确定离子熵,这完全说明了热力学极限中的晶格非谐性。所产生的自由能与计算上更为苛刻的热力学积分(TI)方法所产生的自由能几乎相同(在10 meV /原子之内)。对于液相,PQS不直接适用,自由能通过TI使用Weeks-Chandler-Andersen(WCA)气体作为参考系统确定。 WCA是具有建立的状态方程的简单,短程,纯排斥力。因此,它是液体从头开始TI的理想参考。我们应用此方案来确定在地球内部核心边界(P = 330 GPa)上六角形密堆积(hcp)铁的熔化特性,这在地球科学中具有重要意义。仔细分析了系统大小和伪电位的重要影响。结果(熔化温度等于6170 +/- 200 K,潜热56 +/- 2 kJ / mol,克拉比龙斜率8.1 +/- 0.2 K / GPa)与实验和先前的计算结果一致。

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