论文标题

从地球内部核心条件下BCC和HCP铁的从头开始熔化的温度

Ab initio melting temperatures of bcc and hcp iron under the Earth's inner core condition

论文作者

Sun, Yang, Mendelev, Mikhail I., Zhang, Feng, Liu, Xun, Da, Bo, Wang, Cai-Zhuang, Wentzcovitch, Renata M., Ho, Kai-Ming

论文摘要

在地球内部核心条件下铁的稳定阶段一直存在很长时间的争论。由于内核边界处的固液共存,固相的热力学稳定性直接与它们的熔融温度有关,这仍然是相当大的不确定性。在本研究中,我们利用了拟合到高温为初始数据的半经验潜力来执行来自从头算系统所描述的经典系统的热力学整合。该方法为热力学整合提供了平滑的路径,并显着降低了有限尺寸效应引起的不确定性。我们的结果表明,HCP相是在内部核心条件下纯铁的稳定相,而HCP和BCC相之间的自由能差很小,在熔化温度附近的10s MeV/Atom阶。

There has been a long debate on the stable phase of iron under the Earth's inner core conditions. Because of the solid-liquid coexistence at the inner core boundary, the thermodynamic stability of solid phases directly relates to their melting temperatures, which remains considerable uncertainty. In the present study, we utilized a semi-empirical potential fitted to high-temperature ab initio data to perform a thermodynamic integration from classical systems described by this potential to ab initio systems. This method provides a smooth path for thermodynamic integration and significantly reduces the uncertainty caused by the finite-size effect. Our results suggest the hcp phase is the stable phase of pure iron under the inner core conditions, while the free energy difference between the hcp and bcc phases is tiny, on the order of 10s meV/atom near the melting temperature.

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