Phase Equilibria of Sub-Neptunes and Super-Earths

被引:3
作者
Young, Edward D. [1 ]
Stixrude, Lars [1 ]
Rogers, James G. [1 ]
Schlichting, Hilke E. [1 ]
Marcum, Sarah P. [1 ]
机构
[1] Univ Calif Los Angeles, Dept Earth Planetary & Space Sci, Los Angeles, CA 90095 USA
来源
PLANETARY SCIENCE JOURNAL | 2024年 / 5卷 / 12期
关键词
POWERED MASS-LOSS; RADIUS DISTRIBUTION; SURFACE-TENSION; SILICATE MELTS; ATMOSPHERES; CORE; EVAPORATION; ACCRETION; DENSITY; PLANET;
D O I
10.3847/PSJ/ad8c40
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We investigate the consequences of nonideal chemical interaction between silicate and overlying hydrogen-rich envelopes for rocky planets using basic tenets of phase equilibria. Based on our current understanding of the temperature and pressure conditions for complete miscibility of silicate and hydrogen, we find that the silicate-hydrogen binary solvus will dictate the nature of atmospheres and internal layering in rocky planets that garnered H2-rich primary atmospheres. The temperatures at the surfaces of supercritical magma oceans will correspond to the silicate-hydrogen solvus. As a result, the radial positions of supercritical magma ocean-atmosphere interfaces, rather than their temperatures and pressures, should reflect the thermal states of these planets. The conditions prescribed by the solvus influence the structure of the atmosphere, and thus the transit radii of sub-Neptunes. Separation of iron-rich metal to form metal cores in sub-Neptunes and super-Earths is not assured due to prospects for neutral buoyancy of metal in silicate melt induced by dissolution of H, Si, and O in the metal at high temperatures.
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页数:16
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