Proceedings of the National Academy of Sciences · 2010 · 250 citations · 52 references
Quantum LiquidEngineeringComputational ChemistryChemistrySimple LiquidMolecular HydrogenHigh-pressure HydrogenAb Initio SimulationsPhysicsQuantum Monte CarloPhysical ChemistryQuantum ChemistryHydrogenAb-initio MethodHydrogen TransitionNatural SciencesApplied PhysicsHydrogen-bonded LiquidFirst-order Liquid-liquid TransitionHydrogen Embrittlement
Using quantum simulation techniques based on either density functional theory or quantum Monte Carlo, we find clear evidence of a first-order transition in liquid hydrogen, between a low conductivity molecular state and a high conductivity atomic state. Using the temperature dependence of the discontinuity in the electronic conductivity, we estimate the critical point of the transition at temperatures near 2,000 K and pressures near 120 GPa. Furthermore, we have determined the melting curve of molecular hydrogen up to pressures of 200 GPa, finding a reentrant melting line. The melting line crosses the metalization line at 700 K and 220 GPa using density functional energetics and at 550 K and 290 GPa using quantum Monte Carlo energetics.
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Understanding Molecular Simulation
Daan Frenkel, Berend Smit, Jan Tobochnik et al. · Computers in Physics · 1997 · 5.4K citations