Quasi-molecular and atomic phases of dense solid hydrogen
arXiv:1112.1174 · doi:10.1021/jp301596v
Abstract
The high-pressure phases of solid hydrogen are of fundamental interest and relevant to the interior of giant planets; however, knowledge of these phases is far from complete. Particle swarm optimization (PSO) techniques were applied to a structural search, yielding hitherto unexpected high-pressure phases of solid hydrogen at pressures up to 5 TPa. An exotic quasi-molecular mC24 structure (space group C2/c, stable at 0.47-0.59 TPa) with two types of intramolecular bonds was predicted, providing a deeper understanding of molecular dissociation in solid hydrogen, which has been a mystery for decades. We further predicted the existence of two atomic phases: (i) the oC12 structure (space group Cmcm, stable at > 2.1 TPa), consisting of planar H3 clusters, and (ii) the cI16 structure, previously observed in lithium and sodium, stable above 3.5 TPa upon consideration of the zero-point energy. This work clearly revised the known zero-temperature and high-pressure (>0.47 TPa) phase diagram for solid hydrogen and has implications for the constituent structures of giant planets.
accepted in The Journal of Physical Chemistry
References in corpus (1)
Cited by in corpus (18)
- Hydrogen-bond relaxation dynamics: Resolving mysteries of water ice
- Simulation and understanding of quantum crystals
- Metallization of Magnesium Polyhydrides Under Pressure
- Quantum Monte Carlo study of the phase diagram of solid molecular hydrogen at extreme pressures
- Benchmark of Exchange-Correlation Functionals for High Pressure Hydrogen using Quantum Monte Carlo
- Quantum simulation of low-temperature metallic liquid hydrogen
- Room-Temperature Structures of Solid Hydrogen at High Pressures
- Quantum phase diagram of high-pressure hydrogen
- A simple thermodynamic model for the hydrogen phase diagram
- Multigap superconducting state in molecular metallic hydrogen
- Predicted reentrant melting of dense hydrogen at ultra-high pressures
- H4O and other hydrogen-oxygen compounds at giant-planet core pressures
- On the critical temperature and the energy gap in dense SiH4(H2)2 at 250 GPa
- Ab initio investigation on the experimental observation of metallic hydrogen
- Candidate structure for the H-PRE phase of solid hydrogen
- The Icosahedral (H Supermolecule
- Regelation: why does ice melt under pressure?
- Geometry-Based Neural-Network Prediction of Electron Localization Function Topology in Dense Hydrogen