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Inicio  /  Applied Sciences  /  Vol: 9 Par: 12 (2019)  /  Artículo
ARTÍCULO
TITULO

Graphene-Based Cylindrical Pillar Gratings for Polarization-Insensitive Optical Absorbers

Muhammad Fayyaz Kashif    
Giuseppe Valerio Bianco    
Tiziana Stomeo    
Maria Antonietta Vincenti    
Domenico de Ceglia    
Massimo De Vittorio    
Michael Scalora    
Giovanni Bruno    
Antonella D?Orazio and Marco Grande    

Resumen

In this study, we present a two-dimensional dielectric grating which allows achieving high absorption in a monolayer graphene at visible and near-infrared frequencies. Dielectric gratings create guided-mode resonances that are exploited to effectively couple light with the graphene layer. The proposed structure was numerically analyzed through a rigorous coupled-wave analysis method. Effects of geometrical parameters and response to the oblique incidence of the plane wave were studied. Numerical results reveal that light absorption in the proposed structure is almost insensitive to the angle of the impinging source over a considerable wide angular range of 20°. This may lead to the development of easy to fabricate and experimentally viable graphene-based absorbers in the future.