Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan

In this project, the Erbium Ytterbium-doped waveguide amplifier was designed on a piece of the compact disc (CD). The CD is an optical component that has a refractive index value of 1.55. Fabricating the amplifier involves the process of CD preparation, coating with SU-8 polymer, soft bake, expose w...

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Main Author: Mohd Redzwan, Nor Lailatul Hana
Format: Student Project
Language:English
Published: 2007
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Online Access:https://ir.uitm.edu.my/id/eprint/45420/1/45420.pdf
https://ir.uitm.edu.my/id/eprint/45420/
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Institution: Universiti Teknologi Mara
Language: English
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spelling my.uitm.ir.454202022-12-06T04:37:12Z https://ir.uitm.edu.my/id/eprint/45420/ Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan Mohd Redzwan, Nor Lailatul Hana Descriptive and experimental mechanics In this project, the Erbium Ytterbium-doped waveguide amplifier was designed on a piece of the compact disc (CD). The CD is an optical component that has a refractive index value of 1.55. Fabricating the amplifier involves the process of CD preparation, coating with SU-8 polymer, soft bake, expose with UV, hard bake, cladding removal, splicing, fiber design onto the CD piece and make the PMMA layer onto the fiber. The fiber arrangement also involves in the project. The use of CD, polymer SU-8, and polymerPMMA are for fiber arrangement. The coating of the polymer layer was characterized by using a prism coupler and optical spectrum analyzer. The thickness and refractive index of-8 film on the CD was measured by using a prism coupler. The values with smaller standard deviation were considered as appropriate results to choose for their refractive index and thickness. The Gain (G) and Noise Figure (NF) of the amplifier were measured by using an optical spectrum analyzer. The power pump and corresponding pump current of the laser diode were recorded in the table. The Gain and Noise Figure were measured at several different pump powers. At 5, 10, 20, 30, 40, 50, 60, 70, 80, 90 and 100 mW of the pump power, the Gain of amplifier were -18.14, -2.71, 15.73, 21.80, 24.41, 25.94,26.92, 27.67, 28.27, 28.70 and 29.13 dB respectively. At these pump powers, the NoiseFigure of amplifier were 18.34, 5.79, 2.29, 2.08, 2.09, 2.07, 2.08, 2.05, 2.04, 2.07 and2.04 dB respectively. Lastly, the Gain was measured at fixed pump power at different signal wavelengths of light. At 1530.336, 1535.618, 1540.978, 1545.266, 1549.584,1555.040 and 1559.462 nm of signal wavelength, the amplifier Gain were 33.02, 28.14,25.58, 26.05, 26.05, 22.33 and 24.88 dB respectively. All the measurements were recorded in the appropriate tables. The relevant graphs were plotted based on the records in the tables. 2007 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/45420/1/45420.pdf Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan. (2007) [Student Project] (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Descriptive and experimental mechanics
spellingShingle Descriptive and experimental mechanics
Mohd Redzwan, Nor Lailatul Hana
Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan
description In this project, the Erbium Ytterbium-doped waveguide amplifier was designed on a piece of the compact disc (CD). The CD is an optical component that has a refractive index value of 1.55. Fabricating the amplifier involves the process of CD preparation, coating with SU-8 polymer, soft bake, expose with UV, hard bake, cladding removal, splicing, fiber design onto the CD piece and make the PMMA layer onto the fiber. The fiber arrangement also involves in the project. The use of CD, polymer SU-8, and polymerPMMA are for fiber arrangement. The coating of the polymer layer was characterized by using a prism coupler and optical spectrum analyzer. The thickness and refractive index of-8 film on the CD was measured by using a prism coupler. The values with smaller standard deviation were considered as appropriate results to choose for their refractive index and thickness. The Gain (G) and Noise Figure (NF) of the amplifier were measured by using an optical spectrum analyzer. The power pump and corresponding pump current of the laser diode were recorded in the table. The Gain and Noise Figure were measured at several different pump powers. At 5, 10, 20, 30, 40, 50, 60, 70, 80, 90 and 100 mW of the pump power, the Gain of amplifier were -18.14, -2.71, 15.73, 21.80, 24.41, 25.94,26.92, 27.67, 28.27, 28.70 and 29.13 dB respectively. At these pump powers, the NoiseFigure of amplifier were 18.34, 5.79, 2.29, 2.08, 2.09, 2.07, 2.08, 2.05, 2.04, 2.07 and2.04 dB respectively. Lastly, the Gain was measured at fixed pump power at different signal wavelengths of light. At 1530.336, 1535.618, 1540.978, 1545.266, 1549.584,1555.040 and 1559.462 nm of signal wavelength, the amplifier Gain were 33.02, 28.14,25.58, 26.05, 26.05, 22.33 and 24.88 dB respectively. All the measurements were recorded in the appropriate tables. The relevant graphs were plotted based on the records in the tables.
format Student Project
author Mohd Redzwan, Nor Lailatul Hana
author_facet Mohd Redzwan, Nor Lailatul Hana
author_sort Mohd Redzwan, Nor Lailatul Hana
title Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan
title_short Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan
title_full Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan
title_fullStr Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan
title_full_unstemmed Erbium ytterbium doped waveguide amplifier / Nor Lailatul Hana Mohd Redzwan
title_sort erbium ytterbium doped waveguide amplifier / nor lailatul hana mohd redzwan
publishDate 2007
url https://ir.uitm.edu.my/id/eprint/45420/1/45420.pdf
https://ir.uitm.edu.my/id/eprint/45420/
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