Potential‐Energy Curves for the He2 Molecule
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- Type
- article
- Published
- 1970-05-01
- Cited by
- 78
- References
- 15
- OpenAlex
- https://openalex.org/W65666546
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:92526193
Keywords
Potential energy, Atomic physics, Rydberg formula, Chemistry, Molecule
References
- Données spectroscopiques concernant les molécules diatomiques
- Spectra of diatomic molecules
- Inversion of Low‐Energy Experimental He–He+ Elastic Differential Scattering Sections to the 2Σg+ and 2Σu+ Potentials
- Potential Curves from Molecular Continuum–Continuum Emission. II. The Dissociation Energy of He2 A1Σu+
- On the Calculation of Potential Curves by the Rydberg—Klein—Rees Method. I. Experimental Limitations, Extrapolation Procedures, and Applications to the Third‐Group Hydrides
- Potential Curves for the X2Σu+ and the Lowest 2Σg+ States of the Helium Molecule Ion
- Rydberg states of molecules. VII
- Activation Energy for the Three‐Body Reaction of Helium Triplet Atom with Normal Helium
- Spectrum and Structure of the He2 Molecule. IV. Characterization of the Singlet and Triplet States Associated with the UAO's 3dσ, 3dπ, and 3dδ
- RARE-GAS AND HYDROGEN MOLECULE ELECTRONIC STATES, NONCROSSING RULE, AND RECOMBINATION OF ELECTRONS WITH RARE-GAS AND HYDROGEN IONS
- Some Excited States of the Helium Molecule. I. The Lowest 1Σu+ and 3Σg+ States and the First Excited 1Σg+ States
- Quantum‐Mechanical Study of the F 1Πu and f 3Πu States of He2
- RKR Potential and More Accurate Dissociation Energy of He2(A 1Σu
- Molecular Constants for the l‐Uncoupled Electronic States 3d1,3Δg and 3d1,3Πg of the Hydrogen Molecule
- Absorption Spectrum of the He2 Molecule in the 510–611‐Å Range
Cited by
- Scintillation and Quantum Evaporation Generated by Single Monoenergetic Electrons Stopped in Superfluid Helium
- Detection of metastable He2* molecules in helium plasma
- Repulsive Potential Curves from Molecular Continuum–Continuum Emission III. He2(X 1Σg+)
- Theoretical cross sections for He(11S)+He(11S) to He(11S)+He(21P) and He(21S)
- Exciton Self‐Trapping in Rare‐Gas Crystals
- Profile of spectral-line intensity along a negative glow
- A CLASSIFICATION OF OPEN-SHELL STATES OF MOLECULES
- One electron effective potential calculations for excited states of thenp3∏g series of He2
- Energy trapping in solid He, Ne, Ar, Kr, and Xe by molecule formation - A theoretical interpretation
- The Low-Lying States of He2.
- The influence of the motion of a radiating atom on the line-width in the Doppler limit
- Excitation of the ions of heavy inert gases in the negative glow of a glow discharge in mixtures of helium with argon, krypton, and xenon
- On the quenching of helium 2 3S: Potential energy curves for, and nonadiabatic, relativistic, and radiative couplings between, the a 3Σ+u, A 1Σ+u, b 3Πg, B 1Πg, c 3Σ+g, and C 1Σ+g states of He2
- Excimers and excimer lasers
- Potential energy curves for the a 3Σu+ and c 3Σ+g states of He2 consistent with differential scattering, ab initio theory, and low‐temperature exchange rates
- Femtosecond time-resolved XUV + UV photoelectron imaging of pure helium nanodroplets.
- Time-of-flight study of medium energy range collisions of metastable helium atoms with atomic or diatomic molecular targets
- Dissociation by Electron Impact of Oxygen into Metastable Quintet and Long‐Lived High‐Rydberg Atoms
- CEPA calculations on open-shell molecules. III. Potential curves for the six lowest excited states of He2 in the vicinity of their equilibrium distances
- Observation of laser driven transitions to high rydberg states of He2
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