English

Stretching and bending dynamics in triatomic ultralong-range Rydberg molecules

Atomic Physics 2016-08-03 v3

Abstract

We investigate polyatomic ultralong-range Rydberg molecules consisting of three ground state atoms bound to a Rydberg atom via ss- and pp-wave interactions. By employing the finite basis set representation of the unperturbed Rydberg electron Green's function we reduce the computational effort to solve the electronic problem substantially. This method is subsequently applied to determine the potential energy surfaces of triatomic systems in electronic ss- and pp-Rydberg states. Their molecular geometry and resulting vibrational structure are analyzed within an adiabatic approach that separates the vibrational bending and stretching dynamics. This procedure yields information on the radial and angular arrangement of the nuclei and indicates in particular that kinetic couplings between bending and stretching modes induce a linear structure in triatomic l=0l=0 ultralong-range Rydberg molecules.

Keywords

Cite

@article{arxiv.1605.03856,
  title  = {Stretching and bending dynamics in triatomic ultralong-range Rydberg molecules},
  author = {Christian Fey and Markus Kurz and Peter Schmelcher},
  journal= {arXiv preprint arXiv:1605.03856},
  year   = {2016}
}

Comments

32 pages, 12 figures

R2 v1 2026-06-22T13:59:29.335Z