A detailed numerical study of subwavelength nanogratings behavior to enhance the light absorption characteristics in plasmonic-based metal-semiconductor-metal photodetectors (MSM-PDs) is performed by implementation of 2D finite-difference time-domain (FDTD) algorithm. Due to the structure design and changes in the device physical parameters, various devices with different geometries are simulated and compared. Parameters like nano-grating height and duty cycle (DC) are optimized for rectangular and taper subwavelength metal nanogratings on GaAs substrate and their impact on light absorption below the diffraction limits are confirmed. The calculated light enhancement is ~32.7-times for an optimized device in comparison with a conventional MS...
We present finite-difference time-domain (FDTD) analysis results of light absorption enhancement fac...
Nano-structured metal-semiconductor-metal photodetectors (MSM-PDs) are enable to assist in future hi...
The main purpose of this research is to analyze the light absorption in metal-semiconductor-metal-ph...
Das, NK ORCiD: 0000-0002-3396-4194In this paper, we have analyzed metal-semiconductor-metal photodet...
In this paper, we have analyzed metal-semiconductor-metal photodetectors (MSM-PDs) with different na...
We report the experimental characterization of high-responsivity plasmonics-based GaAsmetal-semicond...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
Das, NK ORCiD: 0000-0002-3396-4194Nanostructured metal-semiconductor-metal photodetectors (MSM-PDs) ...
Nanostructured metal-semiconductor-metal photodetectors (MSM-PDs) can assist in future high-speed co...
Nanostructured metal–semiconductor–metal photodetectors (MSM-PDs) can assist in future high-speed co...
We discuss the light absorption enhancement factor dependence on the design of nanogratings inscribe...
This paper mainly discusses about the maximum light absorption by nano-grating structure assisted me...
We report the experimental characterization of high-responsivity plasmonics-based GaAs metal-semicon...
Metal–semiconductor–metal photodetectors (MSM-PDs) are utilized for suitable nano-structured fabrica...
Metal–semiconductor–metal photodetectors (MSM-PDs) are utilized for suitable nano-structured fabrica...
We present finite-difference time-domain (FDTD) analysis results of light absorption enhancement fac...
Nano-structured metal-semiconductor-metal photodetectors (MSM-PDs) are enable to assist in future hi...
The main purpose of this research is to analyze the light absorption in metal-semiconductor-metal-ph...
Das, NK ORCiD: 0000-0002-3396-4194In this paper, we have analyzed metal-semiconductor-metal photodet...
In this paper, we have analyzed metal-semiconductor-metal photodetectors (MSM-PDs) with different na...
We report the experimental characterization of high-responsivity plasmonics-based GaAsmetal-semicond...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
Das, NK ORCiD: 0000-0002-3396-4194Nanostructured metal-semiconductor-metal photodetectors (MSM-PDs) ...
Nanostructured metal-semiconductor-metal photodetectors (MSM-PDs) can assist in future high-speed co...
Nanostructured metal–semiconductor–metal photodetectors (MSM-PDs) can assist in future high-speed co...
We discuss the light absorption enhancement factor dependence on the design of nanogratings inscribe...
This paper mainly discusses about the maximum light absorption by nano-grating structure assisted me...
We report the experimental characterization of high-responsivity plasmonics-based GaAs metal-semicon...
Metal–semiconductor–metal photodetectors (MSM-PDs) are utilized for suitable nano-structured fabrica...
Metal–semiconductor–metal photodetectors (MSM-PDs) are utilized for suitable nano-structured fabrica...
We present finite-difference time-domain (FDTD) analysis results of light absorption enhancement fac...
Nano-structured metal-semiconductor-metal photodetectors (MSM-PDs) are enable to assist in future hi...
The main purpose of this research is to analyze the light absorption in metal-semiconductor-metal-ph...