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Determination of Vibrational Energy Levels and Transition Dipole Moments of CO2 Molecules by Density Functional Theory

Research output: Contribution to journalArticlepeer-review

Abstract

An Efficient Method is Presented to Calculate the Intra-Molecular Potential Energies and Electrical Dipole Moments of CO2 Molecules at the Electronic Ground State by Solving the Kohn–Sham (KS) Equation for a Total of 101 992 Nuclear Configurations. the Projector-Augmented Wave (PAW) Exchange-Correlation Potential Functionals and Plane Wave (PW) Basis Functions Were Used in Solving the KS Equation. the Calculated Intra-Molecular Potential Function Was Then Included in the Pure Vibrational Schrödinger Equation to Determine the Vibrational Energy Eigen Values and Eigen Functions. the Vibrational Wave Functions Combined with the Calculated Dipole Moment Function Were Used to Determine the Transition Dipole Moments. the Calculated Results Were Compared with the Experimental Data.

Original languageAmerican English
Pages (from-to)108-114
Number of pages7
JournalJournal of Molecular Spectroscopy
Volume252
Issue number2
DOIs
StatePublished - Dec 1 2008

Keywords

  • CO2
  • DFT
  • PW Basis Functions
  • Transition Dipole Moment

Disciplines

  • Aerospace Engineering
  • Mechanical Engineering

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