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A novel TEM waveguide using uniplanar compact photonic-bandgap (UC-PBG) structure

Abstract
A novel waveguide using a photonic bandgap (PBG) structure is presented. The PBG structure is a two-dimensional square lattice with each cell consisting of metal pads and four connecting lines, which are etched on a conductor-backed Duroid substrate. This uniplanar compact PBG structure realizes a magnetic surface in the stopband and is used in the waveguide walls to provide magnetic boundary cond...
Keywords
Stopband
Materials science
Waveguide
Conductor
Photonic crystal
Optics
Photonic integrated circuit
Finite-difference time-domain method
Electrical impedance
Optoelectronics
Resonator
Physics
Quantum mechanics
Composite material



A novel TEM waveguide using uniplanar compact photonic-bandgap (UC-PBG) structure

A novel TEM waveguide using uniplanar compact photonic-bandgap (UC-PBG) structure

Abstract
A novel waveguide using a photonic bandgap (PBG) structure is presented. The PBG structure is a two-dimensional square lattice with each cell consisting of metal pads and four connecting lines, which are etched on a conductor-backed Duroid substrate. This uniplanar compact PBG structure realizes a magnetic surface in the stopband and is used in the waveguide walls to provide magnetic boundary cond...
Keywords
Stopband
Materials science
Waveguide
Conductor
Photonic crystal
Optics
Photonic integrated circuit
Finite-difference time-domain method
Electrical impedance
Optoelectronics
Resonator
Physics
Quantum mechanics
Composite material