Ab initio superionic-liquid phase diagram of Fe1-xOx under Earth's inner core conditions

Fuente: arXiv
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Hauptverfasser: Wu, Zepeng, Gao, Chen, Zhang, Feng, Wu, Shunqing, Ho, Kai-Ming, Wentzcovitch, Renata M., Sun, Yang
Format: Preprint
Veröffentlicht: 2024
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author Wu, Zepeng
Gao, Chen
Zhang, Feng
Wu, Shunqing
Ho, Kai-Ming
Wentzcovitch, Renata M.
Sun, Yang
author_facet Wu, Zepeng
Gao, Chen
Zhang, Feng
Wu, Shunqing
Ho, Kai-Ming
Wentzcovitch, Renata M.
Sun, Yang
contents The superionic state is a phase of matter in which liquid-like ionic mobility coexists with a solid crystalline lattice. Recently identified in Earth's inner core (IC), this state has attracted considerable attention for its unique kinetic behavior and geophysical implications. However, the ab initio phase diagram describing the equilibrium between the superionic phase and the liquid solution under core conditions remains largely unexplored. Here, we present a thermodynamic approach to compute the Gibbs free energy and construct the ab initio superionic-liquid phase diagram for the Fe1-xOx system under IC conditions. We find that oxygen forms superionic states in both hcp and bcc Fe phases, with a pronounced influence on cooperative diffusion of iron in the bcc lattice. The stability fields of these superionic phases are sensitive to oxygen stoichiometry. The presence of superionic states leads to a higher oxygen concentration in the IC than previously estimated. Our work establishes a framework for investigating superionic-liquid equilibria under extreme conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2410_23557
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Ab initio superionic-liquid phase diagram of Fe1-xOx under Earth's inner core conditions
Wu, Zepeng
Gao, Chen
Zhang, Feng
Wu, Shunqing
Ho, Kai-Ming
Wentzcovitch, Renata M.
Sun, Yang
Geophysics
The superionic state is a phase of matter in which liquid-like ionic mobility coexists with a solid crystalline lattice. Recently identified in Earth's inner core (IC), this state has attracted considerable attention for its unique kinetic behavior and geophysical implications. However, the ab initio phase diagram describing the equilibrium between the superionic phase and the liquid solution under core conditions remains largely unexplored. Here, we present a thermodynamic approach to compute the Gibbs free energy and construct the ab initio superionic-liquid phase diagram for the Fe1-xOx system under IC conditions. We find that oxygen forms superionic states in both hcp and bcc Fe phases, with a pronounced influence on cooperative diffusion of iron in the bcc lattice. The stability fields of these superionic phases are sensitive to oxygen stoichiometry. The presence of superionic states leads to a higher oxygen concentration in the IC than previously estimated. Our work establishes a framework for investigating superionic-liquid equilibria under extreme conditions.
title Ab initio superionic-liquid phase diagram of Fe1-xOx under Earth's inner core conditions
topic Geophysics
url https://arxiv.org/abs/2410.23557