Photon-Assisted Tunneling in a Biased Strongly Correlated Bose Gas
arXiv:1105.4629 · doi:10.1103/PhysRevLett.107.095301
Abstract
We study the impact of coherently generated lattice photons on an atomic Mott insulator subjected to a uniform force. Analogous to an array of tunnel-coupled and biased quantum dots, we observe sharp, interaction-shifted photon-assisted tunneling resonances corresponding to tunneling one and two lattice sites either with or against the force, and resolve multiorbital shifts of these resonances. By driving a Landau-Zener sweep across such a resonance, we realize a quantum phase transition between a paramagnet and an antiferromagnet, and observe quench dynamics when the system is tuned to the critical point. Direct extensions will produce gauge fields and site-resolved spin flips, for topological physics and quantum computing.
4 pages, 4 figures
References in corpus (15)
- Many-Body Physics with Ultracold Gases
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Single-Atom Resolved Fluorescence Imaging of an Atomic Mott Insulator
- Topological characterization of periodically-driven quantum systems
- Quantum Simulation of Antiferromagnetic Spin Chains in an Optical Lattice
- Quench dynamics across quantum critical points
- Coherent control of dressed matter waves
- Control of Interaction-Induced Dephasing of Bloch Oscillations
- Observation of photon-assisted tunneling in optical lattices
- Precision measurement of gravity with cold atoms in an optical lattice and comparison with a classical gravimeter
- Mott insulators in strong electric fields
- Atom interferometry with a weakly-interacting Bose Einstein condensate
- Exploring correlated 1D Bose gases from the superfluid to the Mott-insulator state by inelastic light scattering
- Coherent Delocalization of Atomic Wave Packets in Driven Lattice Potentials
- Probing nearest-neighbor correlations of ultracold fermions in an optical lattice
Cited by in corpus (106)
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- High-frequency approximation for periodically driven quantum systems from a Floquet-space perspective
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- Exploring Interacting Topological Insulators with Ultracold Atoms: the Synthetic Creutz-Hubbard Model
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- Ultracold Lattice Gases with Periodically Modulated Interactions
- Density-Dependent Synthetic Gauge Fields Using Periodically Modulated Interactions
- Ultracold bosons with short-range interaction in regular optical lattices
- Single atom detection in ultracold quantum gases: a review of current progress
- Observation of many-body long-range tunneling after a quantum quench
- Floquet realization and signatures of one-dimensional anyons in an optical lattice
- An atom optics approach to studying lattice transport phenomena
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- Quantum gas microscopy with spin, atom-number and multi-layer readout
- Experimental Performance of a Quantum Simulator: Optimizing Adiabatic Evolution and Identifying Many-Body Ground States
- Exploring competing density order in the ionic Hubbard model with ultracold fermions
- Exploring Unconventional Hubbard Models with Doubly Modulated Lattice Gases
- Floquet engineering of topological localization transitions and mobility edges in one-dimensional non-Hermitian quasicrystals
- Kilohertz-driven Bose-Einstein condensates in optical lattices
- Engineering interactions and anyon statistics by multicolor lattice-depth modulations
- The squeezed Kerr oscillator: spectral kissing and phase-flip robustness
- Parametric Excitation and Squeezing in a Many-Body Spin System
- Photon-Assisted-Tunneling Toolbox for Quantum Simulations in Ion Traps
- Ground-state properties of anyons in a one-dimensional lattice
- Interaction-Dependent Photon-Assisted Tunneling in Optical Lattices: A Quantum Simulator of Strongly-Correlated Electrons and Dynamical Gauge Fields
- Quantum Simulation Meets Nonequilibrium Dynamical Mean Field Theory: Exploring the Periodically Driven, Strongly Correlated Fermi-Hubbard Model
- Ultracold molecular Rydberg physics in a high density environment
- Spin many-body phases in standard and topological waveguide QED simulators
- Three body on-site interactions in ultracold bosonic atoms in optical lattices and superlattices
- Observing dynamical currents in a non-Hermitian momentum lattice
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- Interactions enable Thouless pumping in a nonsliding lattice
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- Tuning the Quantum Phase Transition of Bosons in Optical Lattices via Periodic Modulation of s-Wave Scattering Length
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- Preparation of the spin-Mott state: a spinful Mott insulator of repulsively bound pairs
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- Probing the exchange statistics of one-dimensional anyon models
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- The Rhombi-Chain Bose-Hubbard Model: geometric frustration and interactions
- Correlated Spin-Flip Tunneling in a Fermi Lattice Gas
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- Floquet-engineered nonlinearities and controllable pair-hopping processes: From optical Kerr cavities to correlated quantum matter
- Three-body interaction effects on the ground state of one-dimensional anyons
- Ultracold fermions in a one-dimensional bipartite optical lattice: metal-insulator transitions driven by shaking
- Frustrated quantum Ising spins simulated by spinless bosons in a tilted lattice: from a quantum liquid to antiferromagnetic order
- Mott-insulator state of cold atoms in tilted optical lattices: doublon dynamics and multi-level Landau-Zener tunneling
- Dynamically decoupled three-body interactions with applications to interaction-based quantum metrology
- Mott lobes of the Bose-Hubbard model with three-body interactions
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- Fractional photon-assisted tunnelling of ultra-cold atoms in periodically shaken double-well lattices
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- Effects of optical lattices on bright solitons in spin-orbit coupled Bose-Einstein condensates
- Analog simulation of high harmonic generation in atoms
- Generalized parametric resonance in a spin-1 Bose-Einstein condensate
- Homodyne detection of matter-wave fields (shortened)
- Charge and spin gaps of the ionic Hubbard model with density-dependent hopping
- Spatiotemporal Bloch states of a spin-orbit coupled Bose-Einstein condensate in an optical lattice
- Coherent control via interplay between driving field and two-body interaction in a double well
- Quantum entanglement and drifting generated by an AC field resonant with frequency-doubled Bloch oscillations of correlated particles
- Floquet-surface bound states in the continuum in a resonantly driven 1D tilted defect-free lattice
- Photon-Induced Suppression of Interlayer Tunneling in Van Der Waals Heterostructures
- Characterization of photoexcited states in the half-filled one-dimensional extended Hubbard model assisted by machine learning
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- Nonstandard Hubbard model and electron pairing
- Lattice-enabled detection of spin-dependent three-body interactions
- Many-body tunneling in a double-well potential
- Stability of superfluids in tilted optical lattices with periodic driving
- Mott insulators in plaquettes
- Distinguishing mesoscopic quantum superpositions from statistical mixtures in periodically shaken double wells
- Dynamically assisted tunneling in the impulse regime
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- Sachdev-Ye-Kitaev physics from the Hubbard model: A Floquet engineering approach
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