Dispersion control for matter waves and gap solitons in optical superlattices
arXiv:cond-mat/0408291 · doi:10.1103/PhysRevA.71.023612
Abstract
We present a numerical study of dispersion manipulation and formation of matter-wave gap solitons in a Bose-Einstein condensate trapped in an optical superlattice. We demonstrate a method for controlled generation of matter-wave gap solitons in a stationary lattice by using an interference pattern of two condensate wavepackets, which mimics the structure of the gap soliton near the edge of a spectral band. The efficiency of this method is compared with that of gap soliton generation in a moving lattice recently demonstrated experimentally by Eiermann et al. [Phys. Rev. Lett. 92, 230401 (2004)]. We show that, by changing the relative depths of the superlattice wells, one can fine-tune the effective dispersion of the matter waves at the edges of the mini-gaps of the superlattice Bloch-wave spectrum and therefore effectively control both the peak density and the spatial width of the emerging gap solitons.
8 pages, 9 figures; modified references in Section 2; minor content changes in Sections 1 and 2 and Fig. 9 caption
References in corpus (3)
Cited by in corpus (17)
- Gap solitons in quasiperiodic optical lattices
- Period doubling, two-color lattices, and the growth of swallowtails in Bose-Einstein condensates
- Composite localized modes in discretized spin-orbit-coupled Bose-Einstein condensates
- Dynamics and Manipulation of Matter-Wave Solitons in Optical Superlattices
- Controlling transition probability from matter-wave soliton to chaos
- Quantum switches and quantum memories for matter-wave lattice solitons
- Gap solitons in Bragg gratings with a harmonic superlattice
- Superfluid Dynamics of a Bose-Einstein Condensate in a One Dimensional Optical Super-Lattice
- Gap solitons in grating superstructures
- Localized modes in mini-gaps opened by periodically modulated intersite coupling in two-dimensional nonlinear lattices
- Coherence Properties of a Bose-Einstein Condensate in an Optical Superlattice
- Double-discrete solitons in fishnet arrays of optical fibers
- Dispersion Managed Elliptical Atomtronics for Interferometry
- Three small systems showing probable room-temperature superconductivity
- Luttinger liquid in superlattice structures: atomic gases, quantum dots and the classical Ising chain
- Soliton shape and mobility control in optical lattices
- Families of solitons in Bragg supergratings