Fibonacci optical lattices for tunable quantum quasicrystals
Quantum Gases
2016-01-18 v3
Abstract
We describe a quasiperiodic optical lattice, created by a physical realization of the abstract cut-and-project construction underlying all quasicrystals. The resulting potential is a generalization of the Fibonacci tiling. Calculation of the energies and wavefunctions of ultracold atoms loaded into such a lattice demonstrate a multifractal energy spectrum, a singular continuous momentum-space structure, and the existence of controllable edge states. These results open the door to cold atom quantum simulation experiments in tunable or dynamic quasicrystalline potentials, including topological pumping of edge states and phasonic spectroscopy.
Cite
@article{arxiv.1504.06769,
title = {Fibonacci optical lattices for tunable quantum quasicrystals},
author = {Kevin Singh and Kush Saha and Siddharth A. Parameswaran and David M. Weld},
journal= {arXiv preprint arXiv:1504.06769},
year = {2016}
}
Comments
8 pages, 5 figures