1999Journal of Physics B Atomic Molecular and Optical PhysicsOpen access

An energy-consistent method for potential energy curves of diatomic molecules

Weiguo Sun, Hao Feng

Open full text 24 citations

Abstract

A physically well behaved analytical potential of a diatomic system is constructed based on perturbation theory and a potential correction to the Murrell-Sorbie potential. Alternative formulae for rotational constants and ro-vibrational energies are suggested. An energy-consistent method is proposed for calculating accurate potential energy curves of diatomic states. Applications of this method to the electronic states X 1 g + , C 1 u , a 3 g + , e 3 u + of H 2 , the ground state X 1 g + of N 2 , and the states X 3 g - , C 1 u - , B 3 u - of the O 2 molecule show that the present potential agrees excellently with the known Ryderberg-Klein-Rees data or accurate configuration-interaction (CI) studies, and is better than other analytical and some CI potentials, particularly for molecular electronic excited states.

Open-access reader

About this research paper

What this paper is about

A physically well behaved analytical potential of a diatomic system is constructed based on perturbation theory and a potential correction to the Murrell-Sorbie potential. Alternative formulae for rotational constants and ro-vibrational energies are suggested. An energy-consistent method is proposed for calculating accurate potential energy curves of diatomic states. Applications of this method to the electronic states X 1 g + , C 1 u , a 3 g + , e 3 u + of H 2 , the ground state X 1 g + of N 2 , and the states X 3 g - , C 1 u - , B 3 u - of the O 2 molecule show that the present potential agrees excellently with the known Ryderberg-Klein-Rees data or accurate configuration-interaction (CI) studies, and is better than other analytical and some CI potentials, particularly for molecular electronic excited states.

Why it matters

OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

A physically well behaved analytical potential of a diatomic system is constructed based on perturbation theory and a potential correction to the Murrell-Sorbie potential. Alternative formulae for rotational constants and ro-vibrational energies are suggested. An energy-consistent method is proposed for calculating accurate potential energy curves of diatomic states. Applications of this method to the electronic states X 1 g + , C 1 u , a 3 g + , e 3 u + of H 2 , the ground state X 1 g + of N 2 , and the states X 3 g - , C 1 u - , B 3 u - of the O 2 molecule show that the present potential agrees excellently with the known Ryderberg-Klein-Rees data or accurate configuration-interaction (CI) studies, and is better than other analytical and some CI potentials, particularly for molecular electronic excited states.

Key concepts: Diatomic molecule, Potential energy, Excited state, Atomic physics, Excited electronic state, Perturbation theory (quantum mechanics), Physics, Vibrational energy

Related papers

Back to paper searchBrowse research topicsOriginal source
An energy-consistent method for potential energy curves of diatomic molecules — Research Paper | ScholarLens