Photoassociation of ultracold molecules near a Feshbach resonance as a probe of the electron-proton mass ratio variation
arXiv:1402.0494 · doi:10.1016/j.jms.2014.03.005
Abstract
We show that the photoassociation (PA) rate of ultracold diatomic molecules in the vicinity of a Feshbach resonance could be used to probe variations of the electron-to-proton mass ratio , a quantity related to other fundamental constants via the scale. The PA rate exhibits two features near a Feshbach resonance, a minimum and a maximum, which are very sensitive to the details of the interactions and the exact mass of the system. The effect and detection threshold are illustrated in the formation rates of ultracold Li and LiNa molecules by performing coupled-channel calculations in an external magnetic field. We find that the PA rate is particularly sensitive near narrow Feshbach resonances in heavy molecules, where it might be possible to detect relative variability of on the order of . We also use a two-channel model to derive a proportionality relation between the variation of the PA rate and applicable to diatomic molecules.
9 pages, 6 figures; submitted to the Journal of Molecular Spectroscopy
References in corpus (21)
- Single-Atom Resolved Fluorescence Imaging of an Atomic Mott Insulator
- Bose-Einstein Condensation of Erbium
- Tuning the scattering length with an optically induced Feshbach resonance
- Precision Test of Mass Ratio Variations with Lattice-Confined Ultracold Molecules
- Spatial variation in the fine-structure constant -- new results from VLT/UVES
- Stability of the proton-to-electron mass ratio
- Enhanced sensitivity to variation of in molecular spectra
- Hole transitions in multiply-charged ions for precision laser spectroscopy and searching for alpha-variation
- Observation of low-field Fano-Feshbach resonances in ultracold gases of dysprosium
- Ultracold molecules: new probes on the variation of fundamental constants
- Giant formation rates of ultracold molecules via Feshbach Optimized Photoassociation
- Two-photon photoassociative spectroscopy of ultracold 88-Sr
- Robust Constraint on a Drifting Proton-to-Electron Mass Ratio at z=0.89 from Methanol Observation at Three Radio Telescopes
- Perspective: Tipping the scales - search for drifting constants from molecular spectra
- Photoassociation of a Bose-Einstein Condensate near a Feshbach Resonance
- Time-variability of alpha from realistic models of Oklo reactors
- Optical transitions in highly-charged californium ions with high sensitivity to variation of the fine-structure constant
- Enhancement of variation of fundamental constants in ultracold atom and molecule systems near Feshbach resonances
- Variation of fundamental constants in space and time: theory and observations
- Feshbach-optimized photoassociation of ultracold LiRb molecules with short pulses
- A reanalysis of quasar absorption spectra results suggesting a spatial gradient in values of the fine-structure constant
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