Terahertz Magnetic Response from Artificial Materials
Explore this paper's citation graph
Summary
It is shown that magnetic response at terahertz frequencies can be achieved in a planar structure composed of nonmagnetic conductive resonant elements and suggested that artificial magnetic structures, or hybrid structures that combine natural and artificial magnetic materials, can play a key role in teraHertz devices.
- Type
- article
- Published
- 2004-03-05
- Cited by
- 1,453
- References
- 29
- OpenAlex
- https://openalex.org/W2058504517
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14262927
Keywords
Terahertz radiation, Planar, Electrical conductor, Scaling, Bandwidth (computing)
References
- Nonreciprocal optical reflection of the uniaxial antiferromagnet MnF2.
- Terahertz wave imaging: horizons and hurdles.
- Terahertz plasmonic high pass filter
- Magnetic activity at infrared frequencies in structured metallic photonic crystals
- Light Scattering from Bulk and Surface Spin Waves in EuO
- Low frequency plasmons in thin-wire structures
- Applied physics: Bridge for the terahertz gap
- Composite medium with simultaneously negative permeability and permittivity
- Infrared filters using metallic photonic band gap structures on flexible substrates
- Experimental determination of magnetic polariton dispersion curves in FeF 2
- Extremely low frequency plasmons in metallic mesostructures.
- Light scattering from surface and bulk thermal magnons in iron and nickel
- Surface polaritons on uniaxial antiferromagnets
- Three-Dimensionally Ordered Array of Air Bubbles in a Polymer Film
- Brillouin scattering from magnons in ferromagnetic thin films of polycrystalline iron
- Resonant array bandpass filters for the far infrared.
- Determination of effective permittivity and permeability of metamaterials from reflection and transmission coefficients
- Experimental verification and simulation of negative index of refraction using Snell's law.
- Magnetism from conductors and enhanced nonlinear phenomena
Cited by
- Plasmonics: Fundamentals and Applications
- SubDiffraction-Limited Optical Imaging with a Silver Superlens
- Split-ring-resonator-coupled enhanced transmission through a single subwavelength aperture.
- Broadband dielectric terahertz metamaterials with negative permeability.
- Metamaterials: a new frontier of science and technology.
- Graphene plasmonics for tunable terahertz metamaterials.
- Implementing Quantum Search Algorithm with Metamaterials
- Metallic mesh devices-based terahertz parallel-plate resonators: characteristics and applications.
- Pure magnetic-quadrupole scattering and efficient second-harmonic generation from plasmon-dielectric hybrid nano-antennas
- Metal and Semiconductor Nanoparticle Self-Assembly.
- A new class of dynamic quantum metamaterials
- Chirality and metamaterials
- Miniaturized Antennas for Compact Soldier Combat Systems
- Freely-suspended matrix-free metamaterials showing THz left-handed pass bands
- Observation of Wakefield Generation in Left-Handed Band of Metamaterial-Loaded Waveguide
- Dynamical Control of Terahertz Metamaterial Resonance Response Using Bimaterial Cantilevers
- Propagation of electromagnetic waves in Fishnet metamaterials
- Design, fabrication and testing of tunable RF meta-atoms
- Terahertz Quantum-Cascade Transmission-Line Metamaterials
- Nanostructures métalliques résonantes pour les métamatériaux dans le visible : apport de l'ellipsométrie généralisée à la compréhension de leurs propriétés optiques
Related papers
- Tunable Terahertz 3D Metamaterials
- Trapping a terahertz wave in a photonic-crystal slab
- Imaging of terahertz fields and responses
- Higgs amplitude mode in s-wave superconductors revealed by terahertz pump-terahertz probe spectroscopy
- Near-Field Imaging of Subwavelength Circular Hole Arrays at Terahertz Frequencies
- Geneation of Coherent Terahertz Carriers in the 3 THz Range Using Optical-Comb-Based THz Source for Terahertz Communications
- Nonlinear Terahertz pump-Terahertz probe Measurements of Semiconductor Carrier Dynamics
- Finite-Element Method Simulations of Guided Wave Phenomena at Terahertz Frequencies