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Journal ArticleDOI

Reflection phase characterizations of the EBG ground plane for low profile wire antenna applications

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TLDR
In this article, the authors focus on the reflection phase feature of EBG surfaces, which can be used to identify the input-match frequency band inside of which a low profile wire antenna exhibits a good return loss.
Abstract
Mushroom-like electromagnetic band-gap (EBG) structures exhibit unique electromagnetic properties that have led to a wide range of electromagnetic device applications. This paper focuses on the reflection phase feature of EBG surfaces: when plane waves normally illuminate an EBG structure, the phase of the reflected field changes continuously from 180/spl deg/ to -180/spl deg/ versus frequency. One important application of this feature is that one can replace a conventional perfect electric conductor (PEC) ground plane with an EBG ground plane for a low profile wire antenna design. For this design, the operational frequency band of an EBG structure is defined as the frequency region within which a low profile wire antenna radiates efficiently, namely, having a good return loss and radiation patterns. The operational frequency band is the overlap of the input-match frequency band and the surface-wave frequency bandgap. It is revealed that the reflection phase curve can be used to identify the input-match frequency band inside of which a low profile wire antenna exhibits a good return loss. The surface-wave frequency bandgap of the EBG surface that helps improve radiation patterns is very close to its input-match frequency band, resulting in an effective operational frequency band. In contrast, a thin grounded slab cannot work efficiently as a ground plane for low profile wire antennas because its surface-wave frequency bandgap and input-match frequency band do not overlap. Parametric studies have been performed to obtain design guidelines for EBG ground planes. Two novel EBG ground planes with interesting electromagnetic features are also presented. The rectangular patch EBG ground plane has a polarization dependent reflection phase and the slotted patch EBG ground plane shows a compact size.

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Citations
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Proceedings ArticleDOI

A Low Permittivity Metamaterial on a Glass Substrate for Fabricating an Atomic Vapor Cell

TL;DR: In this article, a new type of vapor cell with low perturbation for measuring electric field is proposed to eliminate the field distortion in presence of the vapor cell, which is composed of three sets of parallel metamaterials with characteristics of perfect-electric-conductor (PEC), perfect- magnetic-conductors (PMC), and low permittivity (LPM), respectively.
Proceedings ArticleDOI

Spiral Antenna With a Circular HIS Reflector

TL;DR: In this paper, the antenna characteristics of a spiral antenna with a circular high-impedance surface reflector (CirHISR) were analyzed using FEKO software based on the Method of Moment.
Proceedings ArticleDOI

Dual band antenna using artificial magnetic conductor

TL;DR: In this paper, a flexible antenna which is wearable and reconfigurable in dual-band condition is presented, which can be used in WBAN band (2.4-2.5) and WICN band (3.5-3.6) GHz.
Dissertation

Multi-resolution time-domain modelling technique and its applications in electromagnetic band gap enhanced antennas

Xiaojing Wang
TL;DR: The Haar wavelet based Multi-Resolution Time Domain (MRTD) technique provides improved numerical resolution over the conventional Finite-Difference Time-Domain (FDTD) method, as well as simplicity in formulation.
Proceedings ArticleDOI

Radiating frequency character of dipole antenna with EBG board as a reflector

Wang Suling, +1 more
TL;DR: In this paper, the frequency character of dipole antenna loading with EBG board is discussed, where the EBG reflector is set behind the dipole antennas as a reflector board.
References
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Journal ArticleDOI

Negative Refraction Makes a Perfect Lens

TL;DR: The authors' simulations show that a version of the lens operating at the frequency of visible light can be realized in the form of a thin slab of silver, which resolves objects only a few nanometers across.
Journal ArticleDOI

Experimental Verification of a Negative Index of Refraction

TL;DR: These experiments directly confirm the predictions of Maxwell's equations that n is given by the negative square root ofɛ·μ for the frequencies where both the permittivity and the permeability are negative.
Journal ArticleDOI

High-impedance electromagnetic surfaces with a forbidden frequency band

TL;DR: In this paper, a new type of metallic structure has been developed that is characterized by having high surface impedance, which is analogous to a corrugated metal surface in which the corrugations have been folded up into lumped-circuit elements and distributed in a two-dimensional lattice.
Proceedings Article

Photonic crystals

TL;DR: In this paper, the authors describe photonic crystals as the analogy between electron waves in crystals and the light waves in artificial periodic dielectric structures, and the interest in periodic structures has been stimulated by the fast development of semiconductor technology that now allows the fabrication of artificial structures, whose period is comparable with the wavelength of light in the visible and infrared ranges.
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