Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors

We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-semiconductor-metal (MSM) photodetectors with different groove shapes and analyzed the device performance by varying the physical parameters. The simulations revealed the quality light absorption for v...

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Main Authors: Masouleh, F., Das, Narottam, Mashayekhi, H.
Format: Journal Article
Published: The Society of Photo-Optical Instrumentation Engineers 2013
Online Access:http://hdl.handle.net/20.500.11937/15002
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author Masouleh, F.
Das, Narottam
Mashayekhi, H.
author_facet Masouleh, F.
Das, Narottam
Mashayekhi, H.
author_sort Masouleh, F.
building Curtin Institutional Repository
collection Online Access
description We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-semiconductor-metal (MSM) photodetectors with different groove shapes and analyzed the device performance by varying the physical parameters. The simulations revealed the quality light absorption for various nanogratings. The MSM photodetectors (MSM-PDs) utilizing nanostructure fabrication enable future high-speed devices to achieve high-responsivity bandwidth product. Finite difference time-domain method is used to evaluate the quality light absorption by plasmonics one dimensional nanostructures with the illumination of transverse magnetic light, since the surface plasmon polariton excitation is polarization sensitive. In our modeling, various nanograting profiles incorporated on the conventional MSM-PDs perform in different ways to improve the light absorption capacity in the subwavelength aperture region of the device. Therefore, the grooves’ shape and size are the effective parameters to enhance the light concentration below the diffraction limit. The simulation results demonstrated the light absorption enhancement of ~ 33.6 times for newly introduced nonlinearly tapered (or trapezoidal) ellipse wall nanogratings with the aid of plasmonic nanogratings effects.
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:10:24Z
publishDate 2013
publisher The Society of Photo-Optical Instrumentation Engineers
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spelling curtin-20.500.11937-150022017-09-13T15:00:24Z Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors Masouleh, F. Das, Narottam Mashayekhi, H. We have demonstrated the possibility of quality light absorption in plasmonic nanostructured metal-semiconductor-metal (MSM) photodetectors with different groove shapes and analyzed the device performance by varying the physical parameters. The simulations revealed the quality light absorption for various nanogratings. The MSM photodetectors (MSM-PDs) utilizing nanostructure fabrication enable future high-speed devices to achieve high-responsivity bandwidth product. Finite difference time-domain method is used to evaluate the quality light absorption by plasmonics one dimensional nanostructures with the illumination of transverse magnetic light, since the surface plasmon polariton excitation is polarization sensitive. In our modeling, various nanograting profiles incorporated on the conventional MSM-PDs perform in different ways to improve the light absorption capacity in the subwavelength aperture region of the device. Therefore, the grooves’ shape and size are the effective parameters to enhance the light concentration below the diffraction limit. The simulation results demonstrated the light absorption enhancement of ~ 33.6 times for newly introduced nonlinearly tapered (or trapezoidal) ellipse wall nanogratings with the aid of plasmonic nanogratings effects. 2013 Journal Article http://hdl.handle.net/20.500.11937/15002 10.1117/1.OE.52.12.127101 The Society of Photo-Optical Instrumentation Engineers restricted
spellingShingle Masouleh, F.
Das, Narottam
Mashayekhi, H.
Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors
title Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors
title_full Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors
title_fullStr Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors
title_full_unstemmed Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors
title_short Comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors
title_sort comparison of different plasmonic nanograting profiles for quality light absorption in nanostructured metal-semiconductor-metal photodetectors
url http://hdl.handle.net/20.500.11937/15002