Level structure of deeply bound levels of the state of
arXiv:1703.07752 · doi:10.1103/PhysRevA.95.062507
Abstract
We spectroscopically investigate the hyperfine, rotational and Zeeman structure of the vibrational levels , , within the electronically excited state of for magnetic fields of up to . As spectroscopic methods we use short-range photoassociation of ultracold Rb atoms as well as photoexcitation of ultracold molecules which have been previously prepared in several well-defined quantum states of the potential. As a byproduct, we present optical two-photon transfer of weakly bound Feshbach molecules into , levels featuring different nuclear spin quantum numbers. A simple model reproduces well the molecular level structures of the vibrational states and provides a consistent assignment of the measured resonance lines. Furthermore, the model can be used to predict the relative transition strengths of the lines. From fits to the data we extract for each vibrational level the rotational constant, the effective spin-spin interaction constant, as well as the Fermi contact parameter and (for the first time) the anisotropic hyperfine constant. In an alternative approach, we perform coupled-channel calculations where we fit the relevant potential energy curves, spin-orbit interactions and hyperfine functions. The calculations reproduce the measured hyperfine level term frequencies with an average uncertainty of MHz, similar as for the simple model. From these fits we obtain a section of the potential energy curve for the state which can be used for predicting the level structure for the vibrational manifold to of this electronic state.
17 pages, 9 figures, 12 tables, including Supplemental Material
References in corpus (10)
- A High Phase-Space-Density Gas of Polar Molecules
- Ultracold dense samples of dipolar RbCs molecules in the rovibrational and hyperfine ground state
- Ultracold Dipolar Gas of Fermionic NaK Molecules in their Absolute Ground State
- Creation of ultracold RbCs molecules in the rovibrational ground state
- Ultracold Molecules in the Ro-Vibrational Triplet Ground State
- Creation of an ultracold gas of ground-state molecules
- Optical pumping and vibrational cooling of molecules
- Hyperfine, rotational, and vibrational structure of the triplet ground state of Rb molecules
- Ultracold molecules: new probes on the variation of fundamental constants
- Probing the axis alignment of an ultracold spin-polarized molecule