Vertical excitation energies as well as related absolute photoabsorption oscillator strength data are very scarce in the literature for methane. In this study, we have characterized the three existing series of low-lying Rydberg states of CH4 by computing coupled cluster linear response (CCLR) vertical excitation energies together with oscillator strengths in the molecular-adapted quantum defect orbital formalism from a distorted Cs geometry selected on the basis of outer valence green function calculations. The present work provides a wide range of data of excitation energies and absolute oscillator strengths which correspond to the Rydberg series converging to the three lower ionization potential values of the distorted methane molecule, ...
Rydberg states clearly play an important role in the study of the electronic structure of atoms and ...
We have studied the production of neutral high-Rydberg (HR) fragments from the CH4 molecule at the C...
$^{1}$ T. E. Sharp and J. T. Dowell, J. Chem. Phys. 46, 1530 (1967). $^{2}$ F. H. Dorman, J. Chem. P...
Vertical excitation energies as well as related absolute photoabsorption oscillator strength data ar...
Full 9-dimensional ab initio potential energy surfaces for the methane molecule are constructed usin...
Producción CientíficaIn this work, electron-propagator methods are applied to the calculation of the...
We report cross sections for excitation of the (1t_2→3sa_1) singlet and triplet states of methane by...
The C 1s partial photoionization cross section and photoelectron angular distribution of methane (CH...
We report cross sections for excitation of the (1t_2→3sa_1) singlet and triplet states of methane by...
We report cross sections for excitation of the (1t2→ 3sa1) singlet and triplet states of methane by ...
An ab initio electronic structure technique has been developed to study highly excited states of mol...
An ab initio electronic structure technique has been developed to study highly excited states of mol...
Full 9-dimensional ab initio potential energy surfaces for the methane molecule are constructed usin...
A new nine-dimensional potential energy surface (PES) for methane has been generated using state-of-...
Rydberg states clearly play an important role in the study of the electronic structure of atoms and ...
Rydberg states clearly play an important role in the study of the electronic structure of atoms and ...
We have studied the production of neutral high-Rydberg (HR) fragments from the CH4 molecule at the C...
$^{1}$ T. E. Sharp and J. T. Dowell, J. Chem. Phys. 46, 1530 (1967). $^{2}$ F. H. Dorman, J. Chem. P...
Vertical excitation energies as well as related absolute photoabsorption oscillator strength data ar...
Full 9-dimensional ab initio potential energy surfaces for the methane molecule are constructed usin...
Producción CientíficaIn this work, electron-propagator methods are applied to the calculation of the...
We report cross sections for excitation of the (1t_2→3sa_1) singlet and triplet states of methane by...
The C 1s partial photoionization cross section and photoelectron angular distribution of methane (CH...
We report cross sections for excitation of the (1t_2→3sa_1) singlet and triplet states of methane by...
We report cross sections for excitation of the (1t2→ 3sa1) singlet and triplet states of methane by ...
An ab initio electronic structure technique has been developed to study highly excited states of mol...
An ab initio electronic structure technique has been developed to study highly excited states of mol...
Full 9-dimensional ab initio potential energy surfaces for the methane molecule are constructed usin...
A new nine-dimensional potential energy surface (PES) for methane has been generated using state-of-...
Rydberg states clearly play an important role in the study of the electronic structure of atoms and ...
Rydberg states clearly play an important role in the study of the electronic structure of atoms and ...
We have studied the production of neutral high-Rydberg (HR) fragments from the CH4 molecule at the C...
$^{1}$ T. E. Sharp and J. T. Dowell, J. Chem. Phys. 46, 1530 (1967). $^{2}$ F. H. Dorman, J. Chem. P...