Publication | Open Access
<b><i>Ab initio</i></b>potential energy curve for the neon atom pair and thermophysical properties of the dilute neon gas. I. Neon–neon interatomic potential and rovibrational spectra
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Citations
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References
2008
Year
EngineeringNeon Atom PairAnalytical Potential FunctionComputational ChemistryChemistryElectronic StructureMolecular DynamicsMolecular ThermodynamicsOther PotentialsChemical ThermodynamicsPhysicsAtomic PhysicsPhysical ChemistryRovibrational SpectraQuantum ChemistryMolecular ChemistryDilute Neon GasAb-initio MethodBasis SetsPhysicochemical AnalysisNatural SciencesApplied PhysicsChemical Kinetics
A neon–neon interatomic potential energy curve was derived from quantum-mechanical ab initio calculations using basis sets of up to t-aug-cc-pV6Z quality supplemented with bond functions and ab initio methods up to CCSDT(Q). In addition, corrections for relativistic effects were determined. An analytical potential function was fitted to the ab initio values and utilised to calculate the rovibrational spectra. The quality of the interatomic potential function was tested by comparison of the calculated spectra with experimental ones and those derived from other potentials of the literature. In a following paper the new interatomic potential is applied in the framework of the quantum-statistical mechanics and of the corresponding kinetic theory to determine selected thermophysical properties of neon governed by two-body and three-body interactions.
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