Heavier noble gases dissolve in liquid metallic hydrogen at 500 GPa but helium and neon phase-separate, while all are insoluble in the solid phase.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
citation-role summary
background 1
method 1
citation-polarity summary
verdicts
UNVERDICTED 2representative citing papers
First-principles simulations find denser hydrogen at planetary conditions, implying lower bulk metallicity for Jupiter.
citing papers explorer
-
Noble-Gas Solubility in Solid and Fluid Metallic Hydrogen
Heavier noble gases dissolve in liquid metallic hydrogen at 500 GPa but helium and neon phase-separate, while all are insoluble in the solid phase.
-
A Denser Hydrogen Inferred from First-Principles Simulations Challenges Jupiter's Interior Models
First-principles simulations find denser hydrogen at planetary conditions, implying lower bulk metallicity for Jupiter.