Total absorption of electromagnetic waves in ultimately thin layers
arXiv:1211.3549 · doi:10.1109/TAP.2013.2271892
Abstract
We consider single-layer arrays of electrically small lossy bi-anisotropic particles that completely absorb electromagnetic waves at normal incidence. Required conditions for electromagnetic properties of bi-anisotropic particles have been identified in the most general case of uniaxial reciprocal and nonreciprocal particles. We consider the design possibilities offered by the particles of all four fundamental classes of bianisotropic inclusions: reciprocal chiral and omega particles and nonreciprocal Tellegen and moving particles. We also study the reflection/transmission properties of asymmetric structures with different properties when illuminated from the opposite sides of the sheet. It has been found that it is possible to realize single-layer grids which exhibit the total absorption property when illuminated from one side but are totally transparent when illuminated from the other side (an ultimately thin isolator). Other possible properties are co-polarized or twist polarized reflection from the side opposite to the absorbing one. Finally, we discuss possible approaches to practical realization of particles with the properties required for single-layer perfect absorbers and other proposed devices.
9 pages, 1 Table, Accepted for Publication in Transactions on Antennas & Propagation
References in corpus (5)
Cited by in corpus (28)
- Perfect control of reflection and refraction using spatially dispersive metasurfaces
- General Metasurface Synthesis Based on Susceptibility Tensors
- Broadband reflectionless metasheets: Frequency-selective transmission and perfect absorption
- Theory of metasurface based perfect absorbers
- Functional metamirrors
- Maximum Willis Coupling in Acoustic Scatterers
- Flat Engineered Multi-Channel Reflectors
- Perfect Single-Sided Radiation and Absorption without Mirrors
- One-way transparent sheets
- Balanced and optimal bianisotropic particles: Maximizing power extracted from electromagnetic fields
- Asymmetric Backscattering from the Hybrid Magneto-Electric Meta Particle
- A Comprehensive Multipolar Theory for Periodic Metasurfaces
- Electromagnetic characterization of bianisotropic metasurfaces on refractive substrates: General theoretical framework
- Multifunctional Cascaded Metamaterials: Integrated Transmitarrays
- Recent Advances in Bianisotropic Boundary Conditions: Theory, Capabilities, Realizations, and Applications
- Polarizabilities of nonreciprocal bianisotropic particles
- Efficient Analysis of Metasurfaces in Terms of Spectral-Domain GSTC Integral Equations
- Transmission Lines Emulating Moving Media
- Illusion Mechanisms with Cylindrical Metasurfaces: A General Synthesis Approach
- Bianisotropy and magnetism in plasmonic gratings
- Least Upper Bounds of the Powers Extracted and Scattered by Bi-anisotropic Particles
- Optimization of optical absorption in thin layers of amorphous silicon enhanced by silver nanospheres
- Asymmetric Micro-Doppler Frequency Comb Generation via Magneto-Electric Coupling
- Control of the local and nonlocal electromagnetic response in all-dielectric reconfigurable metasurfaces
- Refracting Metasurfaces without Spurious Diffraction
- Full light absorption in single arrays of spherical nanoparticles
- Tailoring reflections from thin composite metamirrors
- Strong Mode Coupling via Quasi-Bound States in the Continuum in Bianisotropic Metasurfaces