Optics Express · 2012 · 58 citations · 18 references
Thz PhotonicsOptical MaterialsTerahertz TechnologyEngineeringMagnetic ResonanceMetamaterialsTerahertz PhotonicsMagnetic MaterialsElectromagnetic MetamaterialsQuantum MetamaterialsTerahertz PhysicsMagnetoplasmonicsOptical PropertiesSpatial ResolutionNanophotonicsPhotonicsPhysicsHybrid MetamaterialsMagnetic Near-fieldTerahertz DevicesNatural SciencesApplied PhysicsTerahertz TechniqueMetamaterial SplitDynamic Metamaterials
We report on direct measurements of the magnetic near-field of metamaterial split ring resonators at terahertz frequencies using a magnetic field sensitive material. Specifically, planar split ring resonators are fabricated on a single magneto-optically active terbium gallium garnet crystal. Normally incident terahertz radiation couples to the resonator inducing a magnetic dipole oscillating perpendicular to the crystal surface. Faraday rotation of the polarisation of a near-infrared probe beam directly measures the magnetic near-field with 100 femtosecond temporal resolution and (λ/200) spatial resolution. Numerical simulations suggest that the magnetic field can be enhanced in the plane of the resonator by as much as a factor of 200 compared to the incident field strength. Our results provide a route towards hybrid devices for dynamic magneto-active control of light such as isolators, and highlight the utility of split ring resonators as compact probes of magnetic phenomena in condensed matter.
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Negative Refraction Makes a Perfect Lens
J. B. Pendry · Physical Review Letters · 2000 · 11.9K citations · Full text
Complementary planar terahertz metamaterials
Hou‐Tong Chen, John F. O’Hara, Antoinette J. Taylor et al. · Optics Express · 2007 · 344 citations · Full text
Thz Photonics, Electrical Engineering, Planar Electric Split +15