1. Optical-lattice implementation scheme of a bosonic topological model with fermionic atoms.
- Author
-
Nielsen, Anne E. B., Sierra, Germán, and Cirac, J. Ignacio
- Subjects
- *
OPTICAL lattices , *GROUND state (Quantum mechanics) , *MOTT effect (Physics) , *QUANTUM Hall effect , *ANTIFERROMAGNETIC materials , *ENERGY bands - Abstract
We present a scheme to implement a Fermi-Hubbard-like model in ultracold atoms in optical lattices and analyze the topological features of its ground state. In particular, we show that the ground state for appropriate parameters has a large overlap with a lattice version of the bosonic Laughlin state at filling factor one-half. The scheme utilizes laser assisted and normal tunneling in a checkerboard optical lattice. The requirements on temperature, interactions, and hopping strengths are similar to those needed to observe the Néel antiferromagnetic ordering in the standard Fermi-Hubbard model in the Mott insulating regime. [ABSTRACT FROM AUTHOR]
- Published
- 2014
- Full Text
- View/download PDF