Discontinuous Electromagnetic Fields Using Huygens Sources For Wavefront Manipulation
arXiv:1304.3520 · doi:10.1364/OE.21.014409
Abstract
We introduce the idea of discontinuous electric and magnetic fields at a boundary to design and shape wavefronts in an arbitrary manner. To create this discontinuity in the field we use electric and magnetic currents which act like a Huygens source to radiate the desired wavefront. These currents can be synthesized either by an array of electric and magnetic dipoles or by a combined impedance and admittance surface. A dipole array is an active implementation to impose discontinuous fields while the impedance/admittance surface acts as a passive one. We then expand on our previous work showing how electric and magnetic dipole arrays can be used to cloak an object demonstrating two novel cloaking schemes. We also show how to arbitrarily refract a beam using a set of impedance and admittance surfaces. Refraction using the idea of discontinuous fields is shown to be a more general case of refraction using phase discontinuities.
References in corpus (3)
Cited by in corpus (44)
- Perfect control of reflection and refraction using spatially dispersive metasurfaces
- Space-time gradient metasurfaces
- Synthesis of passive lossless metasurfaces using auxiliary fields for reflectionless beam splitting and perfect reflection
- Arbitrary power-conserving field transformations with passive lossless omega-type bianisotropic metasurfaces
- Perfect Anomalous Reflection with a Binary Huygens' Metasurface
- Cavity-excited Huygens' metasurface antennas: near-unity aperture efficiency from arbitrarily-large apertures
- Theory, design, and experimental verification of a reflectionless bianisotropic Huygens' metasurface for wide-angle refraction
- Unveiling the properties of metagratings via a detailed analytical model for synthesis and analysis
- Passive Lossless Huygens Metasurfaces for Conversion of Arbitrary Source Field to Directive Radiation
- Analytical Design of Printed-Circuit-Board (PCB) Metagratings for Perfect Anomalous Reflection
- Arbitrary Diffraction Engineering with Multilayered Multielement Metagratings
- A Leaky-Wave Antenna With Controlled Radiation Using a Bianisotropic Huygens' Metasurface
- Extreme Beam-forming with Impedance Metasurfaces Featuring Embedded Sources and Auxiliary Surface Wave Optimization
- Floquet Analysis of Space-Time Modulated Huygens' Metasurfaces with Lorentz Dispersion
- On the Use of Electromagnetic Inversion for Metasurface Design
- Multifunctional Cascaded Metamaterials: Integrated Transmitarrays
- Phase-Gradient Huygens Metasurface Coatings for Dynamic Beamforming in Linear Antennas
- A Combined Machine-Learning / Optimization-Based Approach for Inverse Design of Nonuniform Bianisotropic Metasurfaces
- Manipulating light at distance by a metasurface using momentum transformation
- Design of Compact Huygens' Metasurface Pairs with Multiple Reflections for Arbitrary Wave Transformations
- A Discrete Fourier Transform-Based Framework for Analysis and Synthesis of Cylindrical Omega-bianisotropic Metasurfaces
- Dual-Polarized All-Metallic Metagratings for Perfect Anomalous Reflection
- Transmission magnitude and phase control for polarization-preserving reflectionless metasurfaces
- Design of reconfigurable Huygens metasurfaces based on Drude-like scatterers operating in the epsilon-negative regime
- Fabry-Pérot Huygens' Metasurfaces: On Homogenization of Electrically Thick Composites
- Semianalytically Designed Dual Polarized Printed-Circuit-Board (PCB) Metagratings
- Optimization of Scalar and Bianisotropic Electromagnetic Metasurface Parameters Satisfying Far-Field Criteria
- Generalized Huygens' condition as the fulcrum of planar nonlocal omnidirectional transparency: from meta-atoms to metasurfaces
- Refracting Metasurfaces without Spurious Diffraction
- Electrically Thick Fabry-Pérot Omega Bianisotropic Metasurfaces as Virtual Anti-Reflective Coatings and Non-Local Field Transformers
- Active Huygens' Box: Metasurface-Enabled Arbitrary Electromagnetic Wave Generation Inside a Cavity
- Analytical and Numerical Analysis of Linear and Nonlinear Properties of an rf-SQUID Based Metasurface
- Design and analysis of frequency-independent reflectionless single-layer metafilms
- Experimental Demonstration of A Dual-Input/Dual-Output Reflective Impedance Metasurface
- Perfect Anomalous Reflection with an Aggressively Discretized Huygens' Metasurface
- Bipartite Dielectric Huygens' Metasurface for Anomalous Refraction
- Experimental Verification of Reflectionless Wide-Angle Refraction via a Bianisotropic Huygens' Metasurface
- Mono-cross-anisotropic Metasurface Absorbing Boundary Condition (ABC)
- Design of Tensor Impedance Transmitarrays For Polarization Control
- Multimodal Anti-Reflective Coatings for Perfecting Anomalous Reflection from Arbitrary Periodic Structures
- Arbitrary Wave Transformations with Huygens' Metasurfaces through Surface-Wave Optimization
- Design and experimental demonstration of impedance-matched circular polarization selective surfaces with spin-selective phase modulations
- Tailoring reflections from thin composite metamirrors
- Metagratings for Perfect Mode Conversion in Rectangular Waveguides: Theory and Experiment