DOE OSTI · 2318947
Coherent Reaction between Molecular and Atomic Bose-Einstein Condensates: Integrable Model
Abstract
Here, we solve a model that describes a stimulated conversion between ultracold bosonic atoms and molecules. The reaction is triggered by a linearly time-dependent transition throughout the Feshbach resonance. Our solution predicts a dependence, with a dynamic phase transition, of the reaction efficiency on the transition rate for both atoms-to-molecule pairing and molecular dissociation processes. We find that for the latter process with a linear energy dispersion of atomic modes, the emerging phase can have a thermalized energy distribution of noninteracting bosons with the temperature defined by the rate of the transition. This provides a simple interpretation of the phase transition in terms of the creation of equilibrium Bose-Einstein condensate.
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Malla, Rajesh Kumar, Chernyak, Vladimir Y., Sun, Chen, Sinitsyn, Nikolai A.. 2022-07-11. Coherent Reaction between Molecular and Atomic Bose-Einstein Condensates: Integrable Model. https://doi.org/10.1103/physrevlett.129.033201
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