arXiv · 1412.5690
Magnetic field dependent interactions in an ultracold Li-Yb($^3$P$_2$) mixture
Abstract
Magnetic Feshbach resonances have allowed great success in the production of ultracold diatomic molecules from bi-alkali mixtures, but have so far eluded observation in mixtures of alkali and alkaline-earth-like atoms. Inelastic collisional properties of ultracold atomic systems exhibit resonant behavior in the vicinity of such resonances, providing a detection signature. We study magnetic field dependent inelastic effects via atom loss spectroscopy in an ultracold heteronuclear mixture of alkali $^6$Li in the ground state and alkaline-earth-like $^{174}$Yb in an excited electronic metastable state ($^3$P$_2$, m$_J$ = -1). We observe a variation of the interspecies inelastic two-body rate coefficient by nearly one order of magnitude over a 100-520G magnetic field range. By comparing to ab-initio calculations we link our observations to interspecies Feshbach resonances arising from anisotropic interactions in this novel collisional system.
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William Dowd, Richard J. Roy, Rajendra K. Shrestha, Alexander Petrov, Constantinos Makrides, Svetlana Kotochigova, Subhadeep Gupta. 2014-12-18. Magnetic field dependent interactions in an ultracold Li-Yb($^3$P$_2$) mixture. https://doi.org/10.1088/1367-2630/17/5/055007
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