Quantum defect theory description of weakly bound levels and Feshbach resonances in LiRb

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Abstract

The multichannel quantum defect theory (MQDT) in combination with the frame transformation (FT) approach is applied to model the Fano-Feshbach resonances measured for 7Li87Rb and 6Li87Rb Marzok et al (2009 Phys. Rev. A 79 012717). The MQDT results show a level of accuracy comparable to that of previous models based on direct, fully numerical solutions of the the coupled channel Schrödinger equations. Here, energy levels deduced from 2-photon photoassociation (PA) spectra for 7Li85Rb are assigned by applying the MQDT approach, obtaining the bound state energies for the coupled channel problem. Our results confirm that MQDT yields a compact description of PA observables as well as the Fano-Feshbach resonance positions and widths.

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Pérez-Ríos, J., Dutta, S., Chen, Y. P., & Greene, C. H. (2015). Quantum defect theory description of weakly bound levels and Feshbach resonances in LiRb. New Journal of Physics, 17. https://doi.org/10.1088/1367-2630/17/4/045021

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