Controllable Soliton Emission from a Bose-Einstein Condensate
María I. Rodas-Verde, Humberto Michinel, Víctor M. Pérez‐García
Abstract
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María I. Rodas-Verde, Humberto Michinel, Víctor M. Pérez‐García
Abstract
Open-access reader
We demonstrate, through numerical simulations, the controllable emission of matter-wave bursts from a Bose-Einstein condensate in a shallow optical dipole trap. The process is triggered by spatial variations of the scattering length along the trapping axis. In our approach, the outcoupling mechanisms are atom-atom interactions and thus, the trap remains unaltered. Once emitted, the matter wave forms a robust soliton. We calculate analytically the parameters for the experimental implementation of these matter-wave bursts of solitons.
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We demonstrate, through numerical simulations, the controllable emission of matter-wave bursts from a Bose-Einstein condensate in a shallow optical dipole trap. The process is triggered by spatial variations of the scattering length along the trapping axis. In our approach, the outcoupling mechanisms are atom-atom interactions and thus, the trap remains unaltered. Once emitted, the matter wave forms a robust soliton. We calculate analytically the parameters for the experimental implementation of these matter-wave bursts of solitons.
Key concepts: Matter wave, Physics, Bose–Einstein condensate, Trap (plumbing), Soliton, Trapping, Dipole, Atom (system on chip)