Strong spatial dispersion in wire media in the very large wavelength limit
arXiv:cond-mat/0211204 · doi:10.1103/PhysRevB.67.113103
Abstract
It is found that there exist composite media that exhibit strong spatial dispersion even in the very large wavelength limit. This follows from the study of lattices of ideally conducting parallel thin wires (wire media). In fact, our analysis reveals that the description of this medium by means of a local dispersive uniaxial dielectric tensor is not complete, leading to unphysical results for the propagation of electromagnetic waves at any frequencies. Since non--local constitutive relations have been usually considered in the past as a second order approximation, meaningful in the short wavelength limit, the aforementioned result presents a relevant theoretical interest. In addition, since such wire media have been recently used as a constituent of some discrete artificial media (or metamaterials), the reported results open the question of the relevance of the spatial dispersion in the characterization of these artificial media.
MiKTex, 4 pages with 2 figures, submitted to PRL
References in corpus (1)
Cited by in corpus (126)
- Epsilon-Near-Zero (ENZ) Metamaterials and Electromagnetic Sources: Tailoring the Radiation Phase Pattern
- Nonlocal optical response in metallic nanostructures
- First-Principle Homogenization Theory for Periodic Metamaterials
- Theory of Supercoupling, Squeezing Wave Energy, and Field Confinement in Narrow Channels and Tight Bends Using Epsilon-Near-Zero Metamaterials
- Sub-wavelength imaging at optical frequencies using canalization regime
- Topological Photonic Phase in Chiral Hyperbolic Metamaterials
- Sub-wavelength imaging by wire media
- Nanowire metamaterials with extreme optical anisotropy
- A Metamaterial Homogenization Approach with Application to the Characterization of Microstructured Composites with Negative Parameters
- Non-local effects in effective medium response of nano-layered meta-materials
- Tunable axion plasma haloscopes
- Metric Signature Transitions in Optical Metamaterials
- Theory of Linear Chains of Metamaterial/Plasmonic Particles as Sub-Diffraction Optical Nanotransmission Lines
- Nonlocal Homogenization Model for a Periodic Array of Epsilon-Negative Rods
- All-Dielectric Rod-Type Metamaterials at Optical Frequencies
- Nonlocal Flat Optics
- Guiding, focusing, and sensing on the sub-wavelength scale using metallic wire arrays
- Toroidal metamaterial
- Hyperbolic Weyl point in reciprocal chiral metamaterial
- On homogenization of electromagnetic crystals formed by uniaxial resonant scatterers
- Sub-wavelength imaging at infrared frequencies using an array of metallic nanorods
- Experimental Verification of 3D Plasmonic Cloaking in Free-Space
- Spontaneous radiation of a finite-size dipole emitter in hyperbolic media
- Modeling of Isotropic Backward-Wave Materials Composed of Resonant Spheres
- Non-local permittivity from a quasi-static model for a class of wire media
- Additional Boundary Condition for the Wire Medium
- Controlling the second-harmonic in a phase matched negative-index metamaterial
- Three-Dimensional Nanotransmission Lines at Optical Frequencies: A Recipe for Broadband Negative-Refraction Optical Metamaterials
- Resolution of sub-wavelength lenses formed by the wire medium
- Near-field enhancement and imaging in double planar polariton-resonant structures
- Effects of Spatial Dispersion on Reflection from Mushroom-type Artificial Impedance Surfaces
- On the low-frequency spatial dispersion in wire media
- Superlens imaging theory for anisotropic nanostructured metamaterials with broadband all-angle negative refraction
- Nonlocal Optics of Plasmonic Nanowire Metamaterials
- Magnification of Subwavelength Field Distributions at Microwave Frequencies Using a Wire Medium Slab Operating in the Canalization Regime
- Purcell effect in wire metamaterials
- Searching For Dark Matter with Plasma Haloscopes
- Experimental study of the sub-wavelength imaging by a wire medium slab
- Additional Boundary Condition for a Wire Medium Connected to a Metallic Surface
- Nonlocal homogenization theory in metamaterials: effective electromagnetic spatial dispersion and artificial chirality
- Design of Linear-to-Circular Polarization Transformers Made of Long Densely Packed Metallic Helices
- Perfect interference-less absorption at infrared frequencies by a van der Waal's crystal
- Electromagnetic field energy density in artificial microwave materials with negative parameters
- Nonlocal transformation optics
- Revisiting the wire medium: a resonant metalens
- Probing dark photons with plasma haloscopes
- Tunability of wire-grid metamaterial immersed into nematic liquid crystal
- Additional Boundary Conditions for Nonconnected Wire Media
- Boundary conditions for interfaces of electromagnetic (photonic) crystals and generalized Ewald-Oseen extinction principle
- An ultra-broadband electromagnetically indefinite medium formed by aligned carbon nanotubes
- Extreme Spatial Dispersion in Nonlocally-Resonant Elastic Metamaterials
- Radiation from elementary sources in a uniaxial wire medium
- Finite-difference frequency-domain method for the extraction of effective parameters of metamaterials
- Modelling of Wave Propagation in Wire Media Using Spatially Dispersive Finite-Difference Time-Domain Method: Numerical Aspects
- Superlens made of a metamaterial with extreme effective parameters
- Emergent axion response in multilayered metamaterials
- Basics of averaging of the Maxwell equations for bulk materials
- Sub-wavelength imaging: Resolution enhancement using metal wire gratings
- Electromagnetic wave refraction at an interface of a double wire medium
- Strong Spatial Dispersion in Time-Modulated Dielectric Media
- Analytical Study of Sub-Wavelength Imaging by Uniaxial Epsilon-Near-Zero Metamaterial Slabs
- Causality, Non-Locality and Negative Refraction
- Hybridization of Epsilon-Near-Zero Modes via Resonant Tunneling in Layered Metal/Insulator Double Nanocavities
- Enhancement of evanescent waves inside media with extreme optical anisotropy
- Asymmetric Transmission and Isolation in Nonlinear Devices: Why They Are Different
- Subwavelength internal imaging by means of the wire medium
- 3-D Metamaterials: Trends on Applied Designs, Computational Methods and Fabrication Techniques
- High symmetry versus optical isotropy of a negative index metamaterial
- Dual-band, double-negative, polarization-independent metamaterial for the visible spectrum
- Retrieving effective material parameters of metamaterials characterized by nonlocal constitutive relations
- Bi-hyperbolic isofrequency surface in a magnetic-semiconductor superlattice
- Spatially dispersive finite-difference time-domain analysis of sub-wavelength imaging by the wire medium slabs
- Longitudinal electromagnetic waves with extremely short wavelength
- Controlling electromagnetic scattering with wire metamaterial resonators
- On the possibility of Casimir repulsion using Metamaterials
- Light tunneling anomaly in interlaced metallic wire meshes
- Left-handed Band in an Electromagnetic Metamaterial Inducedby Sub-wavelength Multiple Scattering
- Spatially Dispersive Inhomogeneous Electromagnetic Media with Periodic Structure
- Theory of Spatial Optical Solitons in Metallic Nanowire Materials
- Modelling Enclosures for Large-Scale Superconducting Quantum Circuits
- Topological transition in coated wire medium
- Interplay between anisotropy and spatial dispersion in metamaterial waveguide
- Analytical solution for the stopping power of the Cherenkov radiation in a uniaxial nanowire material
- Effective Medium Response of Metallic Nanowire Arrays with a Kerr-type Dielectric Host
- Analytic theory of optical nano-plasmonic metamaterials
- Bistability in mushroom-type metamaterials
- Guided modes in a spatially dispersive wire medium slab
- Electromagnetic tunneling of obliquely-incident waves through a single-negative slab paired with a double-positive uniaxial slab
- Anisotropy-assisted non-scattering coherent absorption of surface plasmon-polaritons
- Measuring Dirac Cones in a Sub-Wavelength Metamaterial
- Maxwell's (D, H ) excitation fields: lessons from permanent magnets
- Tunable Wire Metamaterials for an Axion Haloscope
- Macroscopic Electromagnetic Response of Arbitrarily Shaped Spatially Dispersive Bodies formed by Metallic Wires
- Homogenization of nonlocal wire metamaterial via a renormalization approach
- Anomalous polarization conversion in arrays of ultrathin ferromagnetic nanowires
- Customized longitudinal electric field profiles: using spatial dispersion in dielectric wire arrays
- Sampling and Squeezing Electromagnetic Waves through Subwavelength Ultranarrow Regions or Openings
- Surface Plasmon Polaritons Sustained at the Interface of a Nonlocal Metamaterial
- An introduction to spatial dispersion: revisiting the basic concepts
- Generalized Elastodynamic Model for Nanophotonics
- Manipulating lightcone fluctuations in an analogue cosmic string
- A resolution of the problem of additional boundary conditions
- Uniform Field in Microwave Cavities Through the Use of Effective Magnetic Walls
- Interlaced wire medium with quasicrystal lattice
- Tamm-Langmuir surface waves
- Inhomogeneous Spatially Dispersive Electromagnetic Media
- Mode profile shaping in wire media: Towards an experimental verification
- Controlling the dispersion of longitudinal waves via the affine deformation of the interlaced wire medium
- Anisotropy in a wire medium resulting from the rectangularity of a unit cell
- Analytic Materials
- On Negative Index Metamaterial Spacers and Their Unusual Optical Properties
- Topologically induced transparency in a two-phase metamaterial
- Effective Local Permittivity Model for Non-Local Wire Media
- Volume-Preserving Deformation of Honeycomb Wire Media Enables Broad Plasma Frequency Tunability
- Exploring spatial dispersion in helical wired media: An effective field theory approach
- An Equivalent ABCD-Matrix Formalism for Non-Local Wire Media with Arbitrary Terminations
- Effective Medium Perspective on Topological Transitions in Metamaterials
- Light-Weight Base Station Antenna with Artificial Wire Medium Lens
- Reinterpreting the magnetoelectric coupling of polarizability tensors of infinite cylinders using symmetry: a simple TM/TE view
- Overall constitutive description of symmetric layered media based on scattering of oblique SH waves
- Analytical and numerical modeling of reconfigurable reflecting metasurfaces with capacitive memory
- Super Scatterers Based on Artificial Localized Magnon Resonances
- Comment on 'Propagation and Negative Refraction,' IEEE Microwave Magazine, pp. 58-65, July/August 2012
- Vector circuit theory for spatially dispersive uniaxial magneto-dielectric slabs
- Volumetric Metamaterials versus Impedance Surfaces in Scattering Applications
- Extremely broadband topological surface states in a photonic topological metamaterials