A theoretical model based on the coupled mode theory is presented to calculate the absorption in a graphene embedded 1D guided-mode-resonance (GMR) structure that does not require a back reflector. The optimized graphene-GMR structure can absorb up to 70% of the incident light which far exceeds the already reported results without using any back-metal reflector or Bragg mirror. The theoretical analysis is valid for binary gratings and pyramidal gratings which are patterned using an interference lithography system. We experimentally validate our theoretical results and analyze the influence of the geometrical parameters to achieve critical coupling for the enhanced absorption.NRF (Natl Research Foundation, S’pore)MOE (Min. of Education, S’po...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
A theoretical model based on the coupled mode theory is presented to calculate the absorption in a g...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
As a perfect graphene absorber without any external mirrors, we proposed asymmetric slot-assisted gr...
In this study, we present a two-dimensional dielectric grating which allows achieving high absorptio...
The absorption of electromagnetic waves has always attracted a large interest because of its cross-t...
In this study, we present a two-dimensional dielectric grating which allows achieving high absorptio...
We propose a graphene/planar waveguide hybrid structure, and demonstrate total absorption in the vis...
We investigate the linear response of single and multiple graphene sheets embedded in quarter-wave o...
Quarter-wavelength cavity, as a classical structure for preventing wave reflection, presents an effe...
International audience1-D compound metallic grating (CMG) is a periodic structure with more than one...
International audience1-D compound metallic grating (CMG) is a periodic structure with more than one...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
A theoretical model based on the coupled mode theory is presented to calculate the absorption in a g...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
As a perfect graphene absorber without any external mirrors, we proposed asymmetric slot-assisted gr...
In this study, we present a two-dimensional dielectric grating which allows achieving high absorptio...
The absorption of electromagnetic waves has always attracted a large interest because of its cross-t...
In this study, we present a two-dimensional dielectric grating which allows achieving high absorptio...
We propose a graphene/planar waveguide hybrid structure, and demonstrate total absorption in the vis...
We investigate the linear response of single and multiple graphene sheets embedded in quarter-wave o...
Quarter-wavelength cavity, as a classical structure for preventing wave reflection, presents an effe...
International audience1-D compound metallic grating (CMG) is a periodic structure with more than one...
International audience1-D compound metallic grating (CMG) is a periodic structure with more than one...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...
We present a novel strategy based on metallic arrays of nanoparticles for enhancing the optical abso...