Journal of Applied Physics · 2008 · 52 citations · 8 references
Optical MaterialsEngineeringNegative-index MetamaterialMagnetic ResonanceMetamaterialsMetasurfacesEffective PermeabilityMagnetic ComponentMagnetic FieldMagnetic MaterialsElectromagnetic MetamaterialsQuantum MetamaterialsMagnetismMagnetoplasmonicsMagnetic DipoleMagnetophotonicsOptical PropertiesOptical SystemsEu3+ IonsNanophotonicsMaterials SciencePhysicsPhotonic MaterialsOptical AntennasLow-dimensional SystemsMagnetic MeasurementPlasmonicsNatural SciencesApplied PhysicsNanofabricationMagnetic PropertyDynamic Metamaterials
Recent advances in plasmonic-based metamaterials show that the magnetic component of an optical field can be strongly affected by the material’s properties and geometry of metallic nanostructures, leading to such interesting effects as negative magnetic permeability and magnetic resonance in the optical range. To probe such effects experimentally, systems containing Eu3+ ions can be used as spectroscopic tools. The study of the magnetic dipole-related transition at ∼590nm in comparison with the electric dipole-related transition at ∼615nm can reveal information on the relative distribution of magnetic and electric fields as well as effective permeability and permittivity. We report the development of such systems, demonstrating very high emission efficiency, and the first experimental results.
8
Optical negative-index metamaterials
Vladimir M. Shalaev · Nature Photonics · 2006 · 2.8K citations
Optical Materials, Engineering, Optical Negative-index Metamaterials +9
Metamagnetics with rainbow colors
Wenshan Cai, Uday K. Chettiar, Hsiao-Kuan Yuan et al. · Optics Express · 2007 · 285 citations · Full text
Engineering, Negative-index Metamaterial, Magnetic Resonance +16
Spontaneous emission in the optical microscopic cavity
Francesco De Martini, Michele Marrocco, P. Mataloni et al. · Physical Review A · 1991 · 229 citations
Andrey K. Sarychev, Gennady Shvets, Vladimir M. Shalaev · Physical Review E · 2006 · 110 citations