Cesium bright matter-wave solitons and soliton trains
arXiv:1902.03144 · doi:10.1103/PhysRevA.99.033625
Abstract
A study of bright matter-wave solitons of a cesium Bose-Einstein condensate (BEC) is presented. Production of a single soliton is demonstrated and dependence of soliton atom number on the interatomic interaction is investigated. Formation of soliton trains in the quasi one-dimensional confinement is shown. Additionally, fragmentation of a BEC has been observed outside confinement, in free space. In the end a double BEC production setup for studying soliton collisions is described.
9 pages, 7 figures, accepted for publication in Phys. Rev. A
References in corpus (11)
- Atom Interferometers
- Oscillations and interactions of dark and dark-bright solitons in Bose-Einstein condensates
- Formation of bright matter-wave solitons during the collapse of Bose-Einstein condensates
- Experimental observation of oscillating and interacting matter wave dark solitons
- Collisions of matter-wave solitons
- The Sagnac effect: 20 years of development in matter-wave interferometry
- Deviation from one-dimensionality in stationary properties and collisional dynamics of matter-wave solitons
- Sagnac Interferometry Using Bright Matter-Wave Solitons
- Collisions of bright solitary matter waves
- Bright solitary waves and trapped solutions in Bose-Einstein condensates with attractive interactions
- Realizing a stable magnetic double-well potential on an atom chip
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- Soliton interferometry with very narrow barriers obtained from spatially dependent dressed states
- Generating soliton trains through Floquet engineering
- Single-shot Stern-Gerlach magnetic gradiometer with an expanding cloud of cold cesium atoms
- Preparation of ultra-cold atomic-ensemble arrays using time-multiplexed optical tweezers
- Suppression of dark-state polariton collapses in cold-atom quantum memory
- Hyper-entangling mesoscopic bound states
- Splitting and recombination of bright-solitary-matter waves
- Confinement of matter-wave solitons on top of a pedestal-shaped potential
- Soliton Dimer-soliton scattering in coupled Quasi-one-dimensional Dipolar Bose-Einstein Condensates