Observation and modelling of bound-free transitions to the and states of KCs
arXiv:2201.11956 · doi:10.1063/5.0082309
Abstract
The oscillation continuum in laser-induced fluorescence spectra of bound-free and (4) transitions of the KCs molecule were recorded by Fourier-transform spectrometer and modelled under the adiabatic approximation. The required interatomic potentials for ground and states were reconstructed in an analytical Chebishev-polynomial-expansion form in the framework of the regularization direct-potential-fit procedure based on the simultaneous consideration of experimental line positions from [R. Ferber et al, Phys. Rev. A, \textbf{80}, 062501 (2009)] and the present \emph{ab initio} calculation of short-range repulsive potential data. It was proved that the repulsive part over dissociation limit of the derived potential reproduces the experiment better than the potentials reported in literature. It is also shown that all empirical and semi-empirical potentials available for the state reproduce the bound-free (4) spectrum with equal quality in the range of observations.
9 pages, 7 figures
References in corpus (4)
- Reactions of ultracold alkali metal dimers
- Observation of interspecies Feshbach resonances in an ultracold K-Cs mixture and refinement of interaction potentials
- Feshbach resonances, molecular bound states and prospects of ultracold molecule formation in mixtures of ultracold K and Cs
- Fourier-transform spectroscopy and relativistic electronic structure calculation on the state of KCs
Cited by in corpus (4)
- Diatomic molecules of alkali-metal and alkaline-earth-metal atoms: interaction potentials, dipole moments, and polarizabilities
- The state of KCs revisited: hyperfine structure analysis and potential refinement
- Highly Efficient Creation and Detection of Deeply-bound Molecules via Invariant-based Inverse Engineering with Feasible Modified Drivings
- Intensities of KCs band system up to dissociation threshold: an interplay between spin-orbit, hyperfine and rovibronic coupling effects