Optical simulations of 1D digital plasmonic gratings on a Silicon substrate are performed by means of the Finite Elements Method and a modal analysis. The different mechanisms of transmission of the light are elucidated. The absorption profile in Silicon can be modulated and controlled changing the geometry. Configuration maps allow to determine the different optical regimes. Surface Plasmon Polaritons and cavity-mode resonances are shown to be effectively exploitable to enhance NIR-light absorption in different shallower regions of the underlying Silicon
In this paper, we show how light absorption in a plasmonic grating nanosurface can be calculated by ...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Optical simulations of 1D digital plasmonic gratings on a Silicon substrate are performed by means o...
We report surface-plasmon mediated total absorption of light into a silicon substrate. For an Au gra...
Interest in the field of plasmonics has been primarily driven by the need to guide and confine light i...
A set of periodic plasmonic nanostructures is designed and fabricated as a means to investigate ligh...
A set of periodic plasmonic nanostructures is designed and fabricated as a means to investigate ligh...
We investigate the reflected response of one-dimensional metallic grating with rigid coupled-wave an...
This thesis demonstrates the use of the MIT Electromagnetic Equation Propagation (MEEP) software pac...
We present finite-difference time-domain (FDTD) analysis results of light absorption enhancement fac...
Solar energy has seen tremendous advances in the past years. For thin film photovoltaics, which use ...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
We propose and present simulated results for a new design of an optical modulator based on Surface P...
In this paper, we show how light absorption in a plasmonic grating nanosurface can be calculated by ...
In this paper, we show how light absorption in a plasmonic grating nanosurface can be calculated by ...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Optical simulations of 1D digital plasmonic gratings on a Silicon substrate are performed by means o...
We report surface-plasmon mediated total absorption of light into a silicon substrate. For an Au gra...
Interest in the field of plasmonics has been primarily driven by the need to guide and confine light i...
A set of periodic plasmonic nanostructures is designed and fabricated as a means to investigate ligh...
A set of periodic plasmonic nanostructures is designed and fabricated as a means to investigate ligh...
We investigate the reflected response of one-dimensional metallic grating with rigid coupled-wave an...
This thesis demonstrates the use of the MIT Electromagnetic Equation Propagation (MEEP) software pac...
We present finite-difference time-domain (FDTD) analysis results of light absorption enhancement fac...
Solar energy has seen tremendous advances in the past years. For thin film photovoltaics, which use ...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
We propose and present simulated results for a new design of an optical modulator based on Surface P...
In this paper, we show how light absorption in a plasmonic grating nanosurface can be calculated by ...
In this paper, we show how light absorption in a plasmonic grating nanosurface can be calculated by ...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...
Plasmonic nanostructures have been widely studied for enhancing the absorption of light in different...