Chiral Ladders and the Edges of Chern Insulators
arXiv:1306.1190 · doi:10.1103/PhysRevA.89.023619
Abstract
The realization and detection of topological phases with ultracold atomic gases is at the frontier of current theoretical and experimental research. Here, we identify cold atoms in optical ladders subjected to synthetic magnetic fields as readily realizable bridges between one-dimensional spin-orbit (time reversal) topological insulators and two-dimensional Chern insulators. We reveal three instances of their promising potential: i) they realize spin-orbit coupling, with the left-right leg degree of freedom playing the role of an effective spin, ii) their energy bands and eigenstates exactly reproduce the topological chiral edge modes of two-dimensional Chern insulators, and iii) they can be tailored to realize a topological phase transition from a trivial to a topological insulating phase. We propose realistic schemes to observe the chiral and topological properties of ladder systems with current optical lattice-based experiments. Our findings open a door to the exploration of the physics of the edges of Chern insulators and to the realization of spin-orbit coupling and topological superfluid phases with ultracold atomic gases.
6 pages, 6 figures
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Cited by in corpus (118)
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- Topological quantum matter with cold atoms
- A single photonic cavity with two independent physical synthetic dimensions
- Spin-orbit coupled fermions in an optical lattice clock
- Microscopy of the interacting Harper-Hofstadter model in the few-body limit
- Artificial gauge fields in materials and engineered systems
- Experimental band structure spectroscopy along a synthetic dimension
- Vortex and Meissner phases of strongly-interacting bosons on a two-leg ladder
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- Synthetic Dimensions for Cold Atoms from Shaking a Harmonic Trap
- Spin-Orbit Coupling and Spin Textures in Optical Superlattices
- Ultracold fermions in a cavity-induced artificial magnetic field
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- Magnetic crystals and helical liquids in alkaline-earth fermionic gases
- An atom optics approach to studying lattice transport phenomena
- Observation of momentum-space chiral edge currents in room-temperature atoms
- Symmetry-broken states in a system of interacting bosons on a two-leg ladder with a uniform Abelian gauge field
- Topological Creutz Ladder in a Resonantly Shaken 1D Optical Lattice
- Counterdiabatic Optimised Local Driving
- Realization of Fractional Chern Insulators in the Thin-Torus-Limit with Ultracold Bosons
- Creating boundaries along a synthetic frequency dimension
- Chiral currents in one-dimensional fractional quantum Hall states
- Flat-band localization in Creutz superradiance lattices
- Quantum simulation of non-trivial topology
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- One-dimensional topological insulators with noncentered inversion symmetry axis
- Chiral Bosonic Phases on the Haldane Honeycomb Lattice
- Chains with loops - synthetic magnetic fluxes and topological order in one-dimensional spin systems
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- Strongly interacting bosons on a three-leg ladder in the presence of a homogeneous flux
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- Unconventional Quantum Electrodynamics with Hofstadter-Ladder Waveguide
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- Topological phases in odd-legs frustrated synthetic ladders
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- Realization of strongly-interacting Meissner phases in large bosonic flux ladders
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- Cavity-based reservoir engineering for Floquet-engineered superconducting circuits
- Bogoliubov depletion of the fragmented condensate in the bosonic flux ladder
- Synthetic gauge field and chiral physics on two-leg superconducting circuits
- Probing the Hall Voltage in Synthetic Quantum Systems
- Bose-Hubbard ladder subject to effective magnetic field: quench dynamics in a harmonic trap
- Dissipative time evolution of a chiral state after a quantum quench
- Tailoring flat bands and topological phases in a multi-strand Creutz network
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- Synthetic Hall ladder with tunable magnetic flux
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- Driven Topological Systems in the Classical Limit
- Efficient algorithm to compute the Berry conductivity
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- Non-invasive measurement of currents in analog quantum simulators
- Synthesizing the Quantum Spin Hall Phase for Ultracold Atoms in Bichromatic Chiral Optical Ladders
- Control of Plasmons in Topological Insulators via Local Perturbations
- Quasi-one-dimensional Hall physics in the Harper-Hofstadter-Mott model
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- Exploring Thouless Pumping in the Generalized Creutz Model: A Graphical Method and Modulation Schemes
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