Related Experiment Video
Updated: Jan 25, 2026

Applications of EEG Neuroimaging Data: Event-related Potentials, Spectral Power, and Multiscale Entropy
Published on: June 27, 2013
Relativistic spectral bounds for the general molecular potential: application to a diatomic molecule
Hasan Fatih Kisoglu1, Hilmi Yanar2, Oktay Aydogdu3
1Department of Basic Sciences, Faculty of Maritime, Mersin University, 33200, Mersin, Turkey.
Abstract:
We tackle with the Dirac equation in the presence of the general molecular potential (GMP). The spin symmetric solution of the relativistic wave equation is obtained by considering the Pekeris-type approximation scheme to deal with the centrifugal term, and in order to solve second-order differential equation, the asymptotic iteration method (AIM) is used. The closed form of the energy eigenvalue equation is found out for any values of the angular momentum quantum number. We calculate the relativistic vibrational bound state energies of 51Δg state of Na2 molecule and compare them with the Rydberg-Klein-Rees (RKR) data. We show that relativistic vibrational energies of this molecule, which are found in the spin symmetric case, are more convenient with experimental RKR data than non-relativistic vibrational energies. We also obtain normalization constant by considering inductive approach and investigate the radial eigenfunctions and probability density functions corresponding to different eigenvalues graphically for the Na2(51Δg) molecule.
More Related Videos
09:40Measurement and Analysis of Atomic Hydrogen and Diatomic Molecular AlO, C2, CN, and TiO Spectra Following Laser-induced Optical Breakdown
Published on: February 14, 2014
07:11ARL Spectral Fitting as an Application to Augment Spectral Data via Franck-Condon Lineshape Analysis and Color Analysis
Published on: August 19, 2021
Related Concept Videos
Molecular Orbital Theory II
Molecular Shape and Polarity
Behavior of Gas Molecules: Molecular Diffusion, Mean Free Path, and Effusion
Applications of Molecular Taxonomy
Kinetic Molecular Theory and Gas Laws Explain Properties of Gas Molecules
Molecules and Compounds