Real-time control of the periodicity of a standing wave: an optical accordion
arXiv:0803.2733 · doi:10.1364/OE.16.005465
Abstract
We report an experimental method to create optical lattices with real-time control of their periodicity. We demonstrate a continuous change of the lattice periodicity from 0.96 m to 11.2 m in one second, while the center fringe only moves less than 2.7 m during the whole process. This provides a powerful tool for controlling ultracold atoms in optical lattices, where small spacing is essential for quantum tunneling, and large spacing enables single-site manipulation and spatially resolved detection.
6 pages, 6 figures