We present finite-difference time-domain (FDTD) analysis results of light absorption enhancement factor dependence on the profile shape of nano-gratings etched into the surfaces of metal-semiconductor-metal photodetector (MSM-PD) structures. The MSM-PDs patterned by nano-gratings are optimized geometrically, improving the light absorption near the design wavelength through plasmon-assisted electric field concentration effects. FDTD simulation results show about 50 times light absorption enhancement prediction for 850 nm light due to improved optical signal propagation through the nano-gratings in comparison with the conventional MSM-PD designs employing only a subwavelength aperture. We also report on the nano-grating profile shapes obtaine...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
Das, NK ORCiD: 0000-0002-3396-4194The main purpose of this research is to analyze the light absorpti...
In this paper, finite difference time-domain (FDTD) method is used to simulate the light absorption ...
We discuss the light absorption enhancement dependence on the design of nano-gratings inscribed into...
In this paper, we have analyzed metal-semiconductor-metal photodetectors (MSM-PDs) with different na...
Das, NK ORCiD: 0000-0002-3396-4194In this paper, we have analyzed metal-semiconductor-metal photodet...
We use finite difference time-domain (FDTD) method to calculate the light absorption enhancement of ...
This paper mainly discusses about the maximum light absorption by nano-grating structure assisted me...
We discuss the light absorption enhancement factor dependence on the design of nanogratings inscribe...
Nano-structured metal-semiconductor-metal photodetectors (MSM-PDs) are enable to assist in future hi...
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...
Finite difference time-domain (FDTD) method is used to simulate the light absorption in a novel plas...
The main purpose of this research is to analyze the light absorption in metal-semiconductor-metal-ph...
The primary focus of this review article mainly emphasizes the light absorption enhancement for vari...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
Das, NK ORCiD: 0000-0002-3396-4194The main purpose of this research is to analyze the light absorpti...
In this paper, finite difference time-domain (FDTD) method is used to simulate the light absorption ...
We discuss the light absorption enhancement dependence on the design of nano-gratings inscribed into...
In this paper, we have analyzed metal-semiconductor-metal photodetectors (MSM-PDs) with different na...
Das, NK ORCiD: 0000-0002-3396-4194In this paper, we have analyzed metal-semiconductor-metal photodet...
We use finite difference time-domain (FDTD) method to calculate the light absorption enhancement of ...
This paper mainly discusses about the maximum light absorption by nano-grating structure assisted me...
We discuss the light absorption enhancement factor dependence on the design of nanogratings inscribe...
Nano-structured metal-semiconductor-metal photodetectors (MSM-PDs) are enable to assist in future hi...
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...
Finite difference time-domain (FDTD) method is used to simulate the light absorption in a novel plas...
The main purpose of this research is to analyze the light absorption in metal-semiconductor-metal-ph...
The primary focus of this review article mainly emphasizes the light absorption enhancement for vari...
We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-s...
Das, NK ORCiD: 0000-0002-3396-4194The main purpose of this research is to analyze the light absorpti...
In this paper, finite difference time-domain (FDTD) method is used to simulate the light absorption ...