Physical Review Letters · 2008 · 456 citations · 40 references
Quantum ScienceNuclear Quantum EffectsEngineeringNuclear PhysicsPhysicsSimple LiquidNatural SciencesHydrogen-bonded LiquidProton Momentum DistributionPhysical ChemistryComputational ChemistryQuantum ChemistryChemistryMolecular KineticsLiquid WaterNeutron ScatteringMolecular Dynamics
A path-integral Car-Parrinello molecular dynamics simulation of liquid water and ice is performed. It is found that the inclusion of nuclear quantum effects systematically improves the agreement of first-principles simulations of liquid water with experiment. In addition, the proton momentum distribution is computed utilizing a recently developed open path-integral molecular dynamics methodology. It is shown that these results are in good agreement with experimental data.
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