Minimum Instances of Topological Matter in an Optical Plaquette
COFFEE_KLATCH · Invited
Abstract
We propose experimental schemes to create and probe minimum forms of different topologically ordered states in a plaquette of an optical lattice: Resonating Valence Bond, Laughlin and String condensed states. We show how to create anyonic excitations on top of these liquids and detect their fractional statistics. In addition, we propose a way to design a plaquette ring-exchange interaction, the building block Hamiltonian of a lattice topological theory. Our preparation and detection schemes combine different techniques already demonstrated in experiments with atoms in optical superlattices.
*Work done in collaboration with Immanuel Bloch. We acknowledge financial support by the EU under IP (SCALA).
–