Determination of the binding energies of the np Rydberg states of H2, HD, and D2 from high-resolution spectroscopic data by multichannel quantum-defect theory
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.4866809
Reference65 articles.
1. Fundamental Vibration of Molecular Hydrogen
2. Nonadiabatic energies of the ground state of the hydrogen molecule
3. High-resolution millimeter wave spectroscopy and multichannel quantum defect theory of the hyperfine structure in high Rydberg states of molecular hydrogen H2
4. Frequency metrology on theEFΣg+1←XΣg+1(0,0)transition inH2, HD, andD2
5. Determination of the ionization and dissociation energies of the hydrogen molecule
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2. Ionization and dissociation energies of HD and dipole-induced g/u -symmetry breaking;Physical Review A;2023-08-22
3. The fine and hyperfine structures of the low-n 3Πu Rydberg states of H2 revisited;Molecular Physics;2022-12-06
4. Precision millimetre-wave spectroscopy and calculation of the Stark manifolds in high Rydberg states of para-H2;Journal of Molecular Spectroscopy;2022-05
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