Orbital superfluidity in the -band of a bipartite optical square lattice
arXiv:1006.0509 · doi:10.1038/nphys1857
Abstract
The successful emulation of the Hubbard model in optical lattices has stimulated world wide efforts to extend their scope to also capture more complex, incompletely understood scenarios of many-body physics. Unfortunately, for bosons, Feynmans fundamental "no-node" theorem under very general circumstances predicts a positive definite ground state wave function with limited relevance for many-body systems of interest. A promising way around Feynmans statement is to consider higher bands in optical lattices with more than one dimension, where the orbital degree of freedom with its intrinsic anisotropy due to multiple orbital orientations gives rise to a structural diversity, highly relevant, for example, in the area of strongly correlated electronic matter. In homogeneous two-dimensional optical lattices, lifetimes of excited bands on the order of a hundred milliseconds are possible but the tunneling dynamics appears not to support cross-dimensional coherence. Here we report the first observation of a superfluid in the -band of a bipartite optical square lattice with -orbits and -orbits arranged in a chequerboard pattern. This permits us to establish full cross-dimensional coherence with a life-time of several ten milliseconds. Depending on a small adjustable anisotropy of the lattice, we can realize real-valued striped superfluid order parameters with different orientations or a complex-valued order parameter, which breaks time reversal symmetry and resembles the -flux model proposed in the context of high temperature superconductors. Our experiment opens up the realms of orbital superfluids to investigations with optical lattice models.
5 pages, 5 figures
References in corpus (13)
- Many-Body Physics with Ultracold Gases
- Ultracold atomic gases in optical lattices: mimicking condensed matter physics and beyond
- Flat bands and Wigner crystallization in the honeycomb optical lattice
- Controlled exchange interaction between pairs of neutral atoms in an optical lattice
- Direct Observation of the Superfluid Phase Transition in Ultracold Fermi Gases
- Fragmentation of Bose-Einstein Condensates
- State preparation and dynamics of ultracold atoms in higher lattice orbitals
- Staggered-Vortex Superfluid of Ultracold Bosons in an Optical Lattice
- Unconventional Bose-Einstein Condensations Beyond the "No-node" Theorem
- Searching for a Supersolid in Cold Atom Optical Lattices
- Prediction of quantum stripe ordering in optical lattices
- Incommensurate superfluidity of bosons in a double-well optical lattice
- Monte Carlo studies of extensions of the Blume-Emery-Griffiths model
Cited by in corpus (34)
- Nearly-flat bands with nontrivial topology
- Non-standard Hubbard models in optical lattices: a review
- Topological orbital ladders
- Topological characterizations of an extended Su-Schrieffer-Heeger model
- Real time dynamics and proposal for feasible experiments of lattice gauge-Higgs model simulated by cold atoms
- Observing Chiral Superfluid Order by Matter-Wave Interference
- p-band engineering in artificial electronic lattices
- Stable Fulde-Ferrell-Larkin-Ovchinnikov pairing states in 2D and 3D optical lattices
- Double transfer through Dirac points in a tunable honeycomb optical lattice
- Floquet Engineering of Haldane Chern Insulators and Chiral bosonic phase transitions
- Intrinsic Photoconductivity of Ultracold Fermions in Optical Lattices
- Hidden order and symmetry protected topological states in quantum link ladders
- Quantum walks in commensurate off-diagonal Aubry-André-Harper model
- Controlling coherence via tuning of the population imbalance in a bipartite optical lattice
- Quantum diffusion and thermalization at resonant tunneling
- Chiral spin superfluidity and spontaneous spin Hall effect of interacting bosons
- Multi-orbital bosons in bipartite optical lattices
- Perfect localization on flat band binary one-dimensional photonic lattices
- Magnetic end-states in a strongly-interacting one-dimensional topological Kondo insulator
- Floquet FFLO superfluids and Majorana fermions in a shaken fermionic optical lattice
- Ultracold fermions in a one-dimensional bipartite optical lattice: metal-insulator transitions driven by shaking
- Spontaneous magnetization and anomalous Hall effect in an emergent Dice lattice
- Spin-orbital exchange of strongly interacting fermions on the -band of a two-dimensional optical lattice
- Two Atoms in a Double Well: An Exact Solution
- Frustrated Bose-Einstein condensates with non-collinear orbital ordering
- Optical conductivity due to orbital polarons in systems with orbital degeneracy
- Stability of -orbital Bose-Einstein condensates in optical checkerboard and square lattices
- Single atom edge-like states via quantum interference
- One-dimensional s-p superlattice
- Odd-parity topological superfluidity for fermions in a bond-centered square optical lattice
- Topological orbital superfluid with chiral d-wave order in a rotating optical lattice
- State diagram and the phase transition of -bosons in a square bi-partite optical lattice
- Mott insulators in plaquettes
- Hidden chiral symmetry protected topological insulators in a ladder dimer model