Controlled transport of matter waves in two-dimensional optical lattices
arXiv:1003.0748 · doi:10.1103/PhysRevLett.105.090401
Abstract
We propose a method for achieving dynamically controllable transport of highly mobile matter-wave solitons in a driven two-dimensional optical lattice. Our numerical analysis based on the mean-field model and the theory based on the time-averaging approach, demonstrate that a fast time-periodic rocking of the two-dimensional optical lattice enables efficient stabilization and manipulation of spatially localized matter wavepackets via induced reconfigurable mobility channels.
4 pages, 4 figures