KnowraOptical latticeLinked fromLinked fromThe 14 pages that link to Optical lattice, each with the reason it gives.All 14Related 14Laser coolingRelated: Laser-cooled atoms can be loaded into lattices to study quantum many-body systems.Bose–Einstein condensateRelated: Loading condensates into lattices models quantum matter in tunable periodic structures.Atomic physicsRelated: It traps atoms in controllable arrangements for quantum simulation and measurement.Ultracold atomsRelated: It organizes trapped atoms into controllable arrays that mimic crystal lattices.Steven ChuRelated: Laser-controlled atoms can be arranged in lattice potentials for quantum simulation and measurement.Claude Cohen-TannoudjiRelated: Laser manipulation can arrange cold atoms into lattice structures for quantum experiments.Bose gasRelated: It lets experiments reshape a Bose gas into a controllable lattice system.Wolfgang KetterleRelated: Optical lattices extend condensate experiments into controlled studies of quantum many-body systems.Atomic systemRelated: It arranges atoms in controllable patterns that model solid-state systems.Cold atoms and matter wavesRelated: It creates tunable crystal-like environments for studying quantum matter.Confinement-induced resonanceRelated: Lattice tubes can provide the transverse confinement needed to access the resonance.Eric Allin CornellRelated: Condensates placed in optical lattices enable controlled studies of quantum many-body physics.Lattice models in condensed matterRelated: It lets experiments realize tunable lattice Hamiltonians with ultracold atoms.William Daniel PhillipsRelated: Laser-cooled atoms can be loaded into these light-made structures for controlled experiments.