Spectrum Generating Algebra for X3 Molecules
R. Bijker, A. E. L. Dieperink, A. Leviatan
Abstract
A new spectrum generating algebra for a unified description of rotations and vibrations in polyatomic molecules is introduced. An application to nonlinear X3 molecules shows that this model (i) incorporates exactly the relevant point group, (ii) provides a complete classification of oblate top states, and (iii) treats properly both degenerate and nondegenerate vibrations.
Create a lesson
Related papers
A Computational Study of Thirteen-atom Ar-Kr Cluster Heat Capacities
Don D. Frantz
A Variational Approach to the Structure and Thermodynamics of Linear Polyelectrolytes with Coulomb and Screened Coulomb Interactions
B. Jönsson, C. Peterson, B. Söderberg
Applications of the Optimized Effective Potential Method of Density Functional Theory to Atomic and Molecular Systems
T. Grabo, E. K. U. Gross
Relation between a Screened Polyelectrolyte and a Field Theory
Bo Soderberg
ΔI=4 and ΔI=8 bifurcations in rotational bands of diatomic molecules
Dennis Bonatsos, C. Daskaloyannis, G. A. Lalazissis et al.
A Dynamical Theory of Electron Transfer: Crossover from Weak to Strong Electronic Coupling
Juergen T. Stockburger, C. H. Mak