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Showing 1 to 4 of 4 for “"dipole bound"”.

  1. Quartic Force Fields for Electronically Excited States of Interstellar Molecules

    … Special basis sets designed to treat diffuse (dipole-bound) states are developed in the final chapter which lays the foundation for the treatment of larger systems, such as anions, that posses dipole-bound excited states.</p>

    gsu Repository record for Quartic Force Fields for Electronically Excited States of Interstellar Molecules (opens in a new tab)

  2. Effects of Anion Excited States on Photodetachment of Negative Ions

    … calculation. EOM-CCSD calculation reveals a dipole bound anion state, which is responsible for vibrational autodetachment observed in AgF<super>-</super> detachment. Additionally, CAP/EOM-CCSD calculation and experimental data suggest the presence of shape resonances ([AgF<super>-</super>]* …

    wustl Repository record for Effects of Anion Excited States on Photodetachment of Negative Ions (opens in a new tab)

  3. Dipole moment effects in photodetachment from cluster anions

    … from experimental studies on the effect of the dipole moment on photodetachment from solvated iodide anion are presented. The major advantage of using solvated atomic iodide anions: I<super>&minus;</super>&middot;(Y)<sub><italic>n</italic></sub>: Y = solvent molecule, <italic>n</italic>=1 to 3)) …

    wustl Repository record for Dipole moment effects in photodetachment from cluster anions (opens in a new tab)

  4. Theoretical Prediction of Electronically Excited States and Vibrational Frequencies of Interstellar and Planetary Radicals, Anions, and Cations

    … absorption features. Additionally, the dipole moments, electron binding energies, and excited states of neutral radicals and corresponding closed-shell anions of interstellar interest are also computed. These are calibrated against experimental data for CH₂CN⁻ and CH₂CHO⁻. Since coupled …

    vt Repository record for Theoretical Prediction of Electronically Excited States and Vibrational Frequencies of Interstellar and Planetary Radicals, Anions, and Cations (opens in a new tab)