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Angular-Momentum Couplings in Ultra-Long-Range Giant Dipole Molecules

Atomic Physics 2018-02-14 v1

Abstract

In this article we extend the theory of ultra-long-range giant dipole molecules, formed by an atom in a giant dipole state and a ground-state alkali atom, by angular-momentum couplings known from recent works on Rydberg molecules. In addition to ss-wave scattering, the next higher order of pp-wave scattering in the Fermi-pseudopotential describing the binding mechanism is considered. Furthermore, the singlet and triplet channels of the scattering interaction as well as angular-momentum couplings such as hyperfine interaction and Zeeman interactions are included. Within the framework of Born--Oppenheimer theory, potential energy surfaces are calculated in both first-order perturbation theory and exact diagonalization. Besides the known pure triplet states, mixed-spin character states are obtained, opening up a whole new landscape of molecular potentials. We determine exact binding energies and wave functions of the nuclear rotational and vibrational motion numerically from the various potential energy surfaces.

Keywords

Cite

@article{arxiv.1709.06881,
  title  = {Angular-Momentum Couplings in Ultra-Long-Range Giant Dipole Molecules},
  author = {Thomas Stielow and Stefan Scheel and Markus Kurz},
  journal= {arXiv preprint arXiv:1709.06881},
  year   = {2018}
}

Comments

8 pages, 7 figures

R2 v1 2026-06-22T21:49:26.911Z