Publication | Open Access
Breaking inversion symmetry in a state-dependent honeycomb lattice: artificial graphene with tunable band gap
23
Citations
30
References
2016
Year
Quantum Lattice SystemEngineeringAtomic Quantization AxisGraphene NanomeshesInversion SymmetryBiophysicsMaterials SciencePhysicsQuantum SolidQuantum ChemistryEnergy OffsetNatural SciencesGraphene FiberApplied PhysicsCondensed Matter PhysicsDisordered Quantum SystemGrapheneArtificial GrapheneGraphene NanoribbonDirac ConesTunable Band Gap
Here, we present the application of a novel method for controlling the geometry of a state-dependent honeycomb lattice: The energy offset between the two sublattices of the honeycomb structure can be adjusted by rotating the atomic quantization axis. This enables us to continuously tune between a homogeneous graphene-like honeycomb lattice and a triangular lattice and to open an energy gap at the characteristic Dirac points. We probe the symmetry of the lattice with microwave spectroscopy techniques and investigate the behavior of atoms excited to the second energy band. We find a striking influence of the energy gap at the Dirac cones onto the lifetimes of atoms in the excited band.
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