PROJECT TITLE :

Polarization-Independent Single-Mode Waveguiding With Honeycomb Photonic Crystals

ABSTRACT:

A line-defect waveguide hosted in an exceedingly 2D honeycomb photonic-crystal slab is demonstrated theoretically to appreciate polarization-freelance waveguiding. Through an applicable set of style parameters, a normalized bandwidth of $sim 2$ % subject to the condition that the common-frequency region between the transverse-electric and transverse-magnetic polarizations reaches the maximum worth for a silicon-on-insulator structure. Moreover, in contrast to other large-bandwidth polarization-freelance photonic-crystal waveguides, our structure has the highest bandwidth for a polarization-freelance single-mode photonic-crystal waveguide.


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PROJECT TITLE :Wideband and Polarization-Independent Radar Cross Section Reduction Using Holographic MetasurfaceABSTRACT:A strategy adopted for reducing radar cross section (RCS) of antenna by utilizing the holographic metasurface

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