Synthetic Landau levels for photons
arXiv:1511.07381 · doi:10.1038/nature17943
Abstract
Synthetic photonic materials are an emerging platform for exploring the interface between microscopic quantum dynamics and macroscopic material properties[1-5]. Photons experiencing a Lorentz force develop handedness, providing opportunities to study quantum Hall physics and topological quantum science[6-8]. Here we present an experimental realization of a magnetic field for continuum photons. We trap optical photons in a multimode ring resonator to make a two-dimensional gas of massive bosons, and then employ a non-planar geometry to induce an image rotation on each round-trip[9]. This results in photonic Coriolis/Lorentz and centrifugal forces and so realizes the Fock-Darwin Hamiltonian for photons in a magnetic field and harmonic trap[10]. Using spatial- and energy-resolved spectroscopy, we track the resulting photonic eigenstates as radial trapping is reduced, finally observing a photonic Landau level at degeneracy. To circumvent the challenge of trap instability at the centrifugal limit[10,11], we constrain the photons to move on a cone. Spectroscopic probes demonstrate flat space (zero curvature) away from the cone tip. At the cone tip, we observe that spatial curvature increases the local density of states, and we measure fractional state number excess consistent with the Wen-Zee theory, providing an experimental test of this theory of electrons in both a magnetic field and curved space[12-15]. This work opens the door to exploration of the interplay of geometry and topology, and in conjunction with Rydberg electromagnetically induced transparency, enables studies of photonic fractional quantum Hall fluids[16,17] and direct detection of anyons[18-19].
30 pages, 9 figures
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- Topological Photonics
- Topological Photonics
- Chiral Quantum Optics
- Quantum simulations and many-body physics with light
- Artificial gauge fields in materials and engineered systems
- Experimental observation of Aharonov-Bohm cages in photonic lattices
- Tunable-range, photon-mediated atomic interactions in multimode cavity QED
- Observation of Laughlin states made of light
- Probing the Berry Curvature and Fermi Arcs of a Weyl Circuit
- Vortexability: A Unifying Criterion for Ideal Fractional Chern Insulators
- Geometry and response of Lindbladians
- Bimetric Theory of Fractional Quantum Hall States
- Interferometric Measurements of Many-body Topological Invariants using Mobile Impurities
- Transport signatures of Hall viscosity
- Direct observation of photonic Landau levels and helical edge states in strained honeycomb lattices
- Non-Abelian gauge field optics
- Sign-changing photon-mediated atom interactions in multimode cavity QED
- Quarter-Flux Hofstadter Lattice in Qubit-Compatible Microwave Cavity Array
- Electronic materials with nanoscale curved geometries
- Vortex states in an acoustic Weyl crystal with a topological lattice defect
- A Strongly Interacting Polaritonic Quantum Dot
- Dynamically manipulating topological physics and edge modes in a single degenerate optical cavity
- Bilayer Photonic Graphene
- Electrically tunable artificial gauge potential for polaritons
- Meissner-like effect for synthetic gauge field in multimode cavity QED
- Topological photonics: fundamental concepts, recent developments, and future directions
- Emergent Conformal Symmetry of Quantum Hall States on Singular surfaces
- Measuring Electromagnetic and Gravitational Responses of Photonic Landau Levels
- Topological multi-mode waveguide QED
- Investigating anisotropic quantum Hall states with bi-metric geometry
- Chiral quantum optics: recent developments, and future directions
- Non-Abelian adiabatic geometric transformations in a cold Strontium gas
- Fiber ring resonator with nanofiber section for chiral cavity quantum electrodynamics and multimode strong coupling
- Tunable pseudo-magnetic fields for polaritons in strained metasurfaces
- Hall viscosity and electromagnetic response of electrons in graphene
- Theory of chiral edge state lasing in a two-dimensional topological system
- Observation of Multimode Strong Coupling of Cold Atoms to a 30-m Long Optical Resonator
- Emergent and broken symmetries of atomic self-organization arising from Gouy phase shifts in multimode cavity QED
- Time-of-Flight Measurements as a Possible Method to Observe Anyonic Statistics
- Fractional disclination charge and discrete shift in the Hofstadter butterfly
- Optically driven rotation of exciton-polariton condensates
- Bose-Einstein Condensate on a Synthetic Topological Hall Cylinder
- An Autonomous Stabilizer for Incompressible Photon Fluids and Solids
- Topological photonic orbital angular momentum switch
- Probing topological superconductors with emergent gravity
- Topological band structure via twisted photons in a degenerate cavity
- Particle-Hole Duality in the Lowest Landau Level
- Chiral Dynamics of Ultracold Atoms under a Tunable SU(2) Synthetic Gauge Field
- Non-Abelian Generalizations of the Hofstadter model: Spin-orbit-coupled Butterfly Pairs
- Many-Body Open Quantum Systems
- Chiral quantum optics in the bulk of photonic quantum Hall systems
- Efimov States of Strongly Interacting Photons
- Geometric Defects in Quantum Hall States
- Chiral current circulation and symmetry in a trimer of oscillators
- Emergent particle-hole symmetry in spinful bosonic quantum Hall systems
- Topological polarons, quasiparticle invariants and their detection in 1D symmetry-protected phases
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- Generation and spectroscopic signatures of a fractional quantum Hall liquid of photons in an incoherently pumped optical cavity
- Intrinsic sign problem in fermionic and bosonic chiral topological matter
- Observation of twist-induced geometric phases and inhibition of optical tunneling via Aharonov-Bohm effects
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- Degenerate cavity supporting more than 31 Laguerre-Gaussian modes
- Probing non-Hermitian phase transitions in curved space via quench dynamics
- Coherent generation of photonic fractional quantum Hall states in a cavity and the search for anyonic quasiparticles
- Exact Electromagnetic Response of Landau Level Electrons
- Anyonic molecules in atomic fractional quantum Hall liquids: a quantitative probe of fractional charge and anyonic statistics
- Synthetic magnetism for photon fluids
- Hall Viscosity and the Acoustic Faraday Effect
- Light-matter interactions near photonic Weyl points
- Fractional Chern Insulators in Singular Geometries
- Floquet-engineered nonlinearities and controllable pair-hopping processes: From optical Kerr cavities to correlated quantum matter
- Lowest Landau level on a cone and zeta determinants
- Floquet engineering of optical nonlinearities: a quantum many-body approach
- Landau levels for electromagnetic wave
- Real-space probe for lattice quasiholes
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- PT-symmetric quantum oscillator in an optical cavity
- Quantum simulation of zero temperature quantum phases and incompressible states of light via non-Markovian reservoir engineering techniques
- Landau quantization of multilayer graphene on a Haldane sphere
- Geometric responses of the Pfaffian state
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- Landau levels in curved space realized in strained graphene
- Building Flat-Band Lattice Models from Gram Matrices
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- Stabilizing the Laughlin state of light: dynamics of hole fractionalization
- 30-Fold Increase in Atom-Cavity Coupling Using a Parabolic Ring Cavity
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- Observable signatures of Hall viscosity in lowest Landau level superfluids
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