The number of bound vibrational levels in a diatomic molecule
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Spectroscopy,Atomic and Molecular Physics, and Optics
Reference46 articles.
1. Dissociation Energy and Long‐Range Potential of Diatomic Molecules from Vibrational Spacings of Higher Levels
2. Vibrational distributions in N2 with an improved calculation of energy levels using the RKR method
3. Calculation of the scattering length in atomic collisions using the semiclassical approximation
4. Rotational−Vibrational Levels of Diatomic Molecules Represented by the Tietz−Hua Rotating Oscillator
5. Ground State D2 Dissociation Energy from the Near-dissociation Behavior of Rotational Level Spacings
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1. The ground electronic state of ClF: Updated molecular constants and potential curves for 35ClF and 37ClF;Journal of Molecular Spectroscopy;2023-11
2. Solutions of the Klein–Gordon equation with the improved Tietz potential energy model;Journal of Mathematical Chemistry;2018-06-20
3. The stability conditions of diatomic molecules via analogy with the stability theory of lasers;Molecular Physics;2016-03-08
4. Improved direct potential fit analyses for the ground electronic states of the hydrogen halides: HF/DF/TF, HCl/DCl/TCl, HBr/DBr/TBr and HI/DI/TI;Journal of Quantitative Spectroscopy and Radiative Transfer;2015-01
5. Binding energies of the ground triplet state a3Σu+ of Rb2 and Cs2 in terms of the generalized Le Roy–Bernstein near-dissociation expansion;The Journal of Chemical Physics;2014-04-07
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