Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications

The current research project is concerned with the development of the fiber-based supercontinuum light sources. Our approach for the generation of such a light is through the nonlinear optical pulse propagation in the special optical fibers such as the photonic crystal fibers. In the project we have...

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Main Author: Tang, Dingyuan.
Other Authors: School of Electrical and Electronic Engineering
Format: Research Report
Language:English
Published: 2012
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Online Access:http://hdl.handle.net/10356/47611
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-476112023-03-04T03:23:57Z Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications Tang, Dingyuan. School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Microelectronics The current research project is concerned with the development of the fiber-based supercontinuum light sources. Our approach for the generation of such a light is through the nonlinear optical pulse propagation in the special optical fibers such as the photonic crystal fibers. In the project we have first experimentally investigated the noise-like pulse (NLP) generation in the dispersion-managed fiber laser operating in the anomalous dispersion regime. NLPs with spectral bandwidth of 32.1nm were achieved. Parallel to the experimental studies, we have also theoretically analyzed the physical mechanism of the NLP generation in fiber lasers and firstly pointed out that the NLP emission was caused by the combined effect of soliton collapse and positive cavity feedback in the fiber lasers. Based on our theoretical study on the NLP generation in fiber lasers, we predicted that NLP with superbroad bandwidth could be generated in the conventional fiber lasers without dispersion managed cavity. We then experimentally built up a conventional passively mode-locked fiber laser without dispersion management, and experimentally achieved the high energy NLPs with a superbroad bandwidth of 93nm. In addition, a long cavity dispersion-managed fiber laser was also experimentally studied and NLPs with over 100 nJ pulse energy were also demonstrated. For the long cavity fiber lasers, the stimulated Raman effect becomes important. We therefore theoretically analyzed the role of Raman self-frequency shift effect in the NLP generation over gain effect, and experimentally investigated the difference of NLP generation between the long cavity fiber laser and the short cavity fiber laser, and further obtained NLPs with up to 120 nm bandwidth. RG 13/05 2012-01-25T03:55:12Z 2012-01-25T03:55:12Z 2008 2008 Research Report http://hdl.handle.net/10356/47611 en 122 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Microelectronics
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Microelectronics
Tang, Dingyuan.
Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications
description The current research project is concerned with the development of the fiber-based supercontinuum light sources. Our approach for the generation of such a light is through the nonlinear optical pulse propagation in the special optical fibers such as the photonic crystal fibers. In the project we have first experimentally investigated the noise-like pulse (NLP) generation in the dispersion-managed fiber laser operating in the anomalous dispersion regime. NLPs with spectral bandwidth of 32.1nm were achieved. Parallel to the experimental studies, we have also theoretically analyzed the physical mechanism of the NLP generation in fiber lasers and firstly pointed out that the NLP emission was caused by the combined effect of soliton collapse and positive cavity feedback in the fiber lasers. Based on our theoretical study on the NLP generation in fiber lasers, we predicted that NLP with superbroad bandwidth could be generated in the conventional fiber lasers without dispersion managed cavity. We then experimentally built up a conventional passively mode-locked fiber laser without dispersion management, and experimentally achieved the high energy NLPs with a superbroad bandwidth of 93nm. In addition, a long cavity dispersion-managed fiber laser was also experimentally studied and NLPs with over 100 nJ pulse energy were also demonstrated. For the long cavity fiber lasers, the stimulated Raman effect becomes important. We therefore theoretically analyzed the role of Raman self-frequency shift effect in the NLP generation over gain effect, and experimentally investigated the difference of NLP generation between the long cavity fiber laser and the short cavity fiber laser, and further obtained NLPs with up to 120 nm bandwidth.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Tang, Dingyuan.
format Research Report
author Tang, Dingyuan.
author_sort Tang, Dingyuan.
title Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications
title_short Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications
title_full Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications
title_fullStr Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications
title_full_unstemmed Development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications
title_sort development of fiber-based supercontinuum light sources for the biosensor and bio-imaging applications
publishDate 2012
url http://hdl.handle.net/10356/47611
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