Abstract
We report the experimental realization of a Creutz ladder for ultracold fermionic atoms in a resonantly driven 1D optical lattice. The two-leg ladder consists of the two lowest orbital states of the optical lattice and the cross inter-leg links are generated via two-photon resonant coupling between the orbitals by periodic lattice shaking. The characteristic pseudo-spin winding structure in the energy bands of the ladder system is demonstrated using momentum-resolved Ramsey-type interferometric measurements. We discuss a two-tone driving method to extend the inter-leg link control and propose a topological charge pumping scheme for the Creutz ladder system.
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Kang, J. H., Han, J. H., & Shin, Y. (2020). Creutz ladder in a resonantly shaken 1D optical lattice. New Journal of Physics, 22(1). https://doi.org/10.1088/1367-2630/ab61d7
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