Quench Dynamics of Thermal Bose Gases Across Wide and Narrow Feshbach
arXiv:2301.06028 · doi:10.1103/PhysRevA.107.063310
Abstract
Using high-temperature virial expansion, we study the quench dynamics of the thermal Bose gases near a wide, narrow, and intermediate Feshbach resonance. Our results show that the shallow bound state near Feshbach resonance leads to interesting phenomena. Near the wide Feshbach resonance, the long-time oscillates when the scattering length is quenched from zero to large but with finite positive values. The oscillation frequency with being the binding energy. When is quenched to infinity or negative value, the oscillation vanishes. Near the narrow Feshbach resonance, the interaction should be characterized by a two-channel model. When the background scattering length , there is an oscillation in the long-time dynamics, and the frequency is determined by the energy of the shallow bound state in the open channel. When or , there is no shallow bound state in the open channel, hence no long-time oscillation. We check our conclusion using some realistic systems, and the results are consistent with our conclusion.
6+4 pages, 4+2 figures
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