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Splitting of Spectra in Anharmonic Oscillators Described by Kratzer Potential Function
Authors:Irina Petreska  Trifce Sandev  Gjorgji Ivanovski  Ljupco Pejov
Institution:1.Institute of Physics, Faculty of Natural Sciences and Mathematics, P.O. Box 162, 1001 Skopje, Macedonia ;2.Radiation Safety Directorate, blv. Partizanski Odredi 143, P.O. Box 22, 1020 Skopje, Macedonia ;3.Institute of Chemistry, Department of Physical Chemistry, Ss. Cyril and Methodius University, Arhimedova 5, P.O. Box 162, 1000 Skopje, Macedonia
Abstract:A perturbation theory model that describes splitting of the spectra in highly symmetrical molecular species in electrostatic field is proposed. An anahrmonic model of a two-dimensional oscillator having Kratzer potential energy functionis used to model the molecular species and to represent the unperturbed system. A selection rule for the radial quantum number of the oscillator is derived. The eigenfunctions of a two-dimensional anharmonic oscillator in cylindrical coordinates are used for the matrix elements representing the probability for energy transitions in dipole approximation to be calculated. Several forms of perturbation operators are proposed to model the interactionbetween the polyatomic molecular species and an electrostatic field. It is found that the degeneracy is removed in the presence of the electric field and spectral splitting occurs. Anharmonic approximation for the unperturbed system is more accurate and reliable representation of a real polyatomic molecular species.
Keywords:two-dimensional anharmonic oscillator  Kratzer potential  degeneracy  selection rules  perturbation  
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