Experimental realization of a high precision tunable hexagonal optical lattice
arXiv:2207.04670 · doi:10.1364/OE.470742
Abstract
Hexagonal optical lattices offer a tunable platform to study exotic orbital physics in solid state materials. Here, we present a versatile high-precision scheme to implement a hexagonal optical lattice potential, which is engineered by overlapping two independent triangular optical sublattices generated by laser beams with slightly different wavelengths around 1064 nm. This enables us to precisely control the detailed structure of the hexagonal lattice by adjusting the relative position and the relative lattice depth of the two triangular optical sublattices. Taking advantage of the sensitive dependence of the second Bloch band on small lattice deformations, we propose a strategy to optimize the optical lattice geometry with an extremely high precision. This method can also be extended to other lattice configurations involving more than two sublattices. Our work provides the experimental requirements in the search for novel orbital physics of ultracold atoms, for example, in the flat -band of the hexagonal optical lattice.
9 pages, 4 figures
References in corpus (21)
- Many-Body Physics with Ultracold Gases
- Ultracold atomic gases in optical lattices: mimicking condensed matter physics and beyond
- Topological Quantum Matter with Ultracold Gases in Optical Lattices
- Flat bands and Wigner crystallization in the honeycomb optical lattice
- Controlled exchange interaction between pairs of neutral atoms in an optical lattice
- Non-standard Hubbard models in optical lattices: a review
- Orbital superfluidity in the -band of a bipartite optical square lattice
- Multi-Component Quantum Gases in Spin-Dependent Hexagonal Lattices
- An Aharonov-Bohm interferometer for determining Bloch band topology
- The -orbital counterpart of graphene: cold atoms in the honeycomb optical lattice
- Orbital analogue of quantum anomalous Hall effect in -band systems
- Orbital ordering and frustration of -band Mott-insulators
- Orbital order in Mott insulators of spinless p-band fermions
- Prediction of quantum stripe ordering in optical lattices
- Quantum anomalous Hall states in the -orbital honeycomb optical lattices
- Observing Chiral Superfluid Order by Matter-Wave Interference
- Quantum Antiferromagnetism of Fermions in Optical Lattices with Half-filled p-band
- Quantum degenerate Fermi gas in an orbital optical lattice
- Multi-frequency optical lattice for dynamic lattice-geometry control
- Spin-orbital exchange of strongly interacting fermions on the -band of a two-dimensional optical lattice
- Odd-parity topological superfluidity for fermions in a bond-centered square optical lattice