Multichannel quantum-defect theory for magnetic Feshbach resonances in heteronuclear group I systems

Abstract

We present a multichannel quantum-defect theory for magnetic Feshbach resonances in the interaction of two heteronuclear group I atoms. The theory provides a unified and a uniform description of resonances in all partial waves, and enables the characterization of large number of resonances in terms of very few parameters. For the sample system of 6Li40K, we present descriptions of all resonances in aa, ab, and ba channels, in partial waves s (l=0) through h (l=5), and in a magnetic field of 0 through 1000 Gauss. All resonances, including those in nonzero partial waves, are fully characterized using the newly developed parametrization of Gao [Phy. Rev. A 84, 022706 (2011)].

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