Optomechanical creation of magnetic fields for photons on a lattice
arXiv:1502.07646 · doi:10.1364/OPTICA.2.000635
Abstract
We propose using the optomechanical interaction to create artificial magnetic fields for photons on a lattice. The ingredients required are an optomechanical crystal, i.e. a piece of dielectric with the right pattern of holes, and two laser beams with the right pattern of phases. One of the two proposed schemes is based on optomechanical modulation of the links between optical modes, while the other is an lattice extension of optomechanical wavelength-conversion setups. We illustrate the resulting optical spectrum, photon transport in the presence of an artificial Lorentz force, edge states, and the photonic Aharonov-Bohm effect. Moreover, wWe also briefly describe the gauge fields acting on the synthetic dimension related to the phonon/photon degree of freedom. These can be generated using a single laser beam impinging on an optomechanical array.
References in corpus (12)
- Observation of chiral edge states with neutral fermions in synthetic Hall ribbons
- Visualizing edge states with an atomic Bose gas in the quantum Hall regime
- Coherent optical wavelength conversion via cavity-optomechanics
- Time-reversal symmetry breaking in circuit-QED based photon lattices
- Slowing and stopping light using an optomechanical crystal array
- Topologically Robust Transport of Photons in a Synthetic Gauge Field
- Design of Optomechanical Cavities and Waveguides on a Simultaneous Bandgap Phononic-Photonic Crystal Slab
- Continuous mode cooling and phonon routers for phononic quantum networks
- Optomechanics in an ultrahigh-Q slotted 2D photonic crystal cavity
- Multiple membrane cavity optomechanics
- Reservoir engineering and dynamical phase transitions in optomechanical arrays
- Comment on "Creating artificial magnetic fields for cold atoms by photon-assisted tunneling" by Kolovsky A.R
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- Generalized nonreciprocity in an optomechanical circuit via synthetic magnetism and reservoir engineering
- Nonreciprocity and magnetic-free isolation based on optomechanical interactions
- Topological quantum matter in synthetic dimensions
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- Synthetic Dimensions for Cold Atoms from Shaking a Harmonic Trap
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- Noise-Induced Transitions in Optomechanical Synchronization
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- Laser cooling of a nanomechanical oscillator to the zero-point energy
- Tutorial: synthetic frequency dimensions in dynamically modulated ring resonators
- Topological Amplification in Photonic Lattices
- Universal sign-control of coupling in tight-binding lattices
- Nonreciprocal photon blockade via quadratic optomechanical coupling
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- Thermal management and non-reciprocal control of phonon flow via optomechanics
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- Nonreciprocal transport based on cavity Floquet modes in optomechanics
- Floquet topological system based on frequency-modulated classical coupled harmonic oscillators
- Single-photon nonreciprocal transport in one-dimensional coupled-resonator waveguides
- A comprehensive review on developments of synthetic dimensions
- Classical Dynamical Gauge Fields in Optomechanics
- L lines, C points and Chern numbers: understanding band structure topology using polarization fields
- Haldane Quantum Hall Effect for Light in a Dynamically Modulated Array of Resonators
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- Strong optical coupling through superfluid Brillouin lasing
- Quantum state transfer via acoustic edge states in a 2D optomechanical array
- Setting Boundaries with Memory: Generation of Topological Boundary States in Floquet-Induced Synthetic Crystals
- Theory of a 3+1D fractional chiral metal: interacting variant of the Weyl semimetal
- Manipulating synthetic gauge fluxes via multicolor dressing of Rydberg-atom arrays
- Quantum correlations in optomechanical crystals
- Nonreciprocal single-photon frequency converter via multiple semi-infinite coupled-resonator waveguides
- Phonoritonic crystals with synthetic magnetic field for acoustic diode
- Optomechanical Kerker effect
- The quantized Hall conductance of a single atomic wire: A proposal based on synthetic dimensions
- Many-body quantum interference on hypercubes
- Hybrid confinement of optical and mechanical modes in a bullseye optomechanical resonator
- A giant atom with modulated transition frequency
- Quantum walks in synthetic gauge fields with 3D integrated photonics
- Controllable generation of mechanical quadrature squeezing via dark-mode engineering in cavity optomechanics
- Controllable unidirectional transport and photon storage in an one-dimensional lattice with complex hopping rates
- Chimera states in small disordered optomechanical arrays
- Anderson Localization of Composite Excitations in Disordered Optomechanical Arrays
- Realization of Hofstadter's butterfly and a one-way edge mode in a polaritonic system
- Electric fields for light: Propagation of microwave photons along a synthetic dimension
- Design of tunable GHz-frequency optomechanical crystal resonators
- Floquet dynamics in quantum measurement of mechanical motion
- Thermal noise cancellation for optomechanically induced nonreciprocity in a whispering-gallery-mode microresonator
- Generating Synthetic Magnetism via Floquet Engineering Auxiliary Qubits in Phonon-Cavity-Based Lattice
- Quench Dynamics in 1D Optomechanical Arrays
- Realizing spin-dependent gauge field with biaxial metamaterials
- Asynchronous Locking in Metamaterials of Fluids of Light and Sound
- Generalized Su-Schrieffer-Heeger model in one dimensional optomechanical arrays
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- Permanent Directional Heat Currents in Lattices of Optomechanical Resonators
- Synthetic dimensions and topological chiral currents in mesoscopic rings
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- Floquet engineering of continuous-time quantum walks: towards the simulation of complex and next-to-nearest neighbor couplings
- Floquet scattering of light and sound in Dirac optomechanics
- Static synthetic gauge field control of double optomechanically induced transparency in a closed-contour interaction scheme
- All-optical control of the photonic Hall lattice in a pumped waveguide array
- Nonreciprocal transition between two nondegenerate energy levels
- Two-flux tunable Aharonov-Bohm caging in a photonic lattice
- Manifestation of the coupling phase in microwave cavity magnonics
- Dynamically Generated Synthetic Electric Fields for Photons
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- Generation of stable Gaussian cluster states in optomechanical systems with multifrequency drives
- Enhancing optomechanical force sensing utilizing synthetic magnetism
- Quasi-edge states and topological Bloch oscillation in the synthetic space
- Random-Flux-Induced Transition Sequence between Weak and Strong Topological Phases with Anisotropic Localization Properties
- Chiral excitation flows of a multinode network based on synthetic gauge fields
- Multiterminal Nonreciprocal Routing in an Optomechanical Plaquette via Synthetic Magnetism
- Simulation of chiral motion of excitation within the ground-state manifolds of neutral atoms
- Dynamical Generation of Synthetic Electric Fields for Photons in the Quantum Regime
- Topology and criticality in non-Hermitian multimodal optical resonators through engineered losses
- Localization effects from local phase shifts in the modulation of waveguide arrays
- Selective cooling and squeezing in a lossy optomechanical closed loop embodying an exceptional surface
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- Estimation of disorders in the rest positions of two membranes in optomechanical systems
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- Exploring Nonreciprocal Noise Transfer under Onsager-Casimir Symmetry in Synthetic-Field Optomechanics
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