Interaction-Enhanced Group Velocity of Bosons in the Flat Band of an Optical Kagome Lattice
· Invited
Abstract
Geometric frustration of particle motion in a kagome lattice causes the single-particle band structure to have a flat s-orbital band. We probe this band structure by placing a Bose-Einstein condensate into excited Bloch states of an optical kagome lattice, and then measuring the group velocity through the atomic momentum distribution. We find that interactions renormalize the band structure, greatly increasing the dispersion of the third band, which is nearly non-dispersing the single-particle treatment. Calculations based on the lattice Gross-Pitaevskii equation indicate that band structure renormalization is caused by the distortion of the overall lattice potential away from the kagome geometry by interactions.
*This work was supported by the NSF, and by the AFOSR and ARO through the MURI program (grant numbers FA9550-14- 1-0035 and W911NF-17-1-0323, respectively).
–
Presenters
-
Tsz-Him Leung
- University of California, Berkeley