A Metamaterial Homogenization Approach with Application to the Characterization of Microstructured Composites with Negative Parameters
arXiv:cond-mat/0611461 · doi:10.1103/PhysRevB.75.115104
Abstract
In this work, we develop a new systematic and self-consistent approach to homogenize arbitrary non-magnetic periodic metamaterials. The proposed method does not rely on the solution of an eigenvalue problem and can fully characterize the effects of frequency dispersion, magneto-electric coupling, and spatial dispersion, even in frequency band-gaps or when the materials are lossy. We formulate a homogenization problem to characterize a generic microstructured artificial material, and demonstrate that it is equivalent to an integral-differential system. We prove that this complex system can be reduced to a standard integral equation and solved using standard methods. To illustrate the application of the proposed method, we homogenize several important metamaterial configurations involving split ring resonators and metallic wires.
44 pages - Physical Review B (2007) (in press)
References in corpus (9)
- Determination of Effective Permittivity and Permeability of Metamaterials from Reflection and Transmission Coefficients
- Strong spatial dispersion in wire media in the very large wavelength limit
- Sub-wavelength imaging by wire media
- Optical Nanotransmission Lines: Synthesis of Planar Left-Handed Metamaterials in the Infrared and Visible Regimes
- A planar magneto-inductive lens for three-dimensional subwavelength imaging
- Electrodynamics of metallic photonic crystals and problem of left-handed materials
- Additional Boundary Condition for the Wire Medium
- Three-Dimensional Nanotransmission Lines at Optical Frequencies: A Recipe for Broadband Negative-Refraction Optical Metamaterials
- Nonlocal electrodynamics of two-dimensional wire mesh photonic crystals
Cited by in corpus (64)
- Photonics of Time-Varying Media
- Gradient metasurfaces: a review of fundamentals and applications
- First-Principle Homogenization Theory for Periodic Metamaterials
- Nonlocal Flat Optics
- Hyperbolic Weyl point in reciprocal chiral metamaterial
- Inverse Prism based on Temporal Discontinuity and Spatial Dispersion
- Dynamical Theory of Artificial Optical Magnetism Produced by Rings of Plasmonic Nanoparticles
- Fundamental limitations of Huygens metasurfaces for optical beam shaping
- Effective medium theory for anisotropic metamaterials
- Unified Homogenization Theory for Magnetoinductive and Electromagnetic Waves in Split Ring Metamaterials
- 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
- On the limits of the effective description of hyperbolic materials in presence of surface waves
- Bloch-mode analysis for retrieving effective parameters of metamaterials
- Topological Index for Continuous Photonic Materials
- Generalized Retrieval Method for Metamaterial Constitutive Parameters Based on a Physically-Driven Homogenization Approach
- An Effective Medium Approach to Electron Waves: Graphene Superlattices
- On effective electromagnetic parameters of artificial nanostructured magnetic materials
- Comment on "Repulsive Casimir Force in Chiral Metamaterials"
- Boundary conditions for the effective-medium description of subwavelength multilayered structures
- Efficient treatment of stacked metasurfaces for optimizing and enhancing the range of accessible optical functionalities
- Finite-difference frequency-domain method for the extraction of effective parameters of metamaterials
- Beyond local effective material properties for metamaterials
- Emergent axion response in multilayered metamaterials
- Basics of averaging of the Maxwell equations for bulk materials
- Nonlocal homogenization for nonlinear metamaterials
- Exact modeling method for discrete finite metamaterial lens
- Non-linear eigenvalue problems with GetDP and SLEPc: Eigenmode computations of frequency-dispersive photonic open structures
- Nonlocality in uniaxially polarizable media
- 3-D Metamaterials: Trends on Applied Designs, Computational Methods and Fabrication Techniques
- Homogenization of Maxwell's equations in periodic composites
- Temperature-tunable semiconductor metamaterial
- A T-matrix Based Approach to Homogenize Artificial Materials
- Nonlocal response of Mie-resonant dielectric particles
- Theoretical and numerical analysis of current-driven electromagnetic homogenization and the problem of effective medium parameters for finite samples
- A metasurface with bidirectional hyperbolic surface modes and positionsensing applications
- Homogenization of Dispersive Spacetime Crystals: Anomalous Dispersion and Negative Stored Energy
- Aperiodic-Order-Induced Enhancement of Weak Nonlocality in Multilayered Dielectric Metamaterials
- Ultimate resolution of indefinite metamaterial flat lenses
- A Metamaterial-Inspired Model for Electron Waves in Bulk Semiconductors
- Effective Hamiltonian for electron waves in artificial graphene: A first principles derivation
- Electro-magnetostatic homogenization of bianisotropic metamaterials
- Boundary Effects of Weak Nonlocality in Multilayered Dielectric Metamaterials
- Electromagnetic stress tensor for amorphous metamaterial medium
- Enhanced nonlocal effects in metamaterials with moderate-index inclusions
- Closed-form expressions for effective constitutive parameters and electro/magneto-strictive tensors for bi-anisotropic metamaterials and their use in optical force density calculations
- Surface Plasmon Polaritons Sustained at the Interface of a Nonlocal Metamaterial
- Effects of deterministic disorder at deeply subwavelength scales in multilayered dielectric metamaterials
- Negative radiation pressure in metamaterials explained by light-driven atomic mass density rarefication waves
- Higher order multipoles in metamaterial homogenization
- Keller's Theorem Revisited
- Can photonic crystals be homogenized in higher bands?
- Relaxed dispersion constraints and metamaterial effective parameters with physical meaning for all frequencies
- Four definitions of magnetic permeability for periodic metamaterials
- Recursive Calculation of the Optical Response of Multicomponent Metamaterials
- Quadraxial metamaterial
- Separable metamaterials: analytical ab-initio homogenization and chirality
- Topologically induced transparency in a two-phase metamaterial
- From Whitney Forms to Metamaterials: a Rigorous Homogenization Theory
- Effective Medium Perspective on Topological Transitions in Metamaterials
- Non-local optical response of a multi-phased quantum material
- Reinterpreting the magnetoelectric coupling of polarizability tensors of infinite cylinders using symmetry: a simple TM/TE view
- Homogenization of Metamaterials by Dual Interpolation of Fields: a Rigorous Treatment of Resonances and Nonlocality
- Homogenizing metamaterials, three times