Synthetic gauge fields in synthetic dimensions: Interactions and chiral edge modes
Abstract
Synthetic ladders realized with one-dimensional alkaline-earth(-like) fermionic gases and subject to a gauge field represent a promising environment for the investigation of quantum Hall physics with ultracold atoms. Using density-matrix renormalization group calculations, we study how the quantum Hall-like chiral edge currents are affected by repulsive atom-atom interactions. We relate the properties of such currents to the asymmetry of the spin resolved momentum distribution function, a quantity which is easily addressable in state-of-art experiments. We show that repulsive interactions significantly stabilize the quantum Hall-like helical region and enhance the chiral currents. Our numerical simulations are performed for atoms with two and three internal spin states.
Keywords
Cite
@article{arxiv.1510.05603,
title = {Synthetic gauge fields in synthetic dimensions: Interactions and chiral edge modes},
author = {Simone Barbarino and Luca Taddia and Davide Rossini and Leonardo Mazza and Rosario Fazio},
journal= {arXiv preprint arXiv:1510.05603},
year = {2016}
}
Comments
16 pages, 8 figures, 1 appendix