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Analysis of diffraction grating induced distributed feedback for stable single mode quantum cascade lasers

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dc.contributor.advisor Talukder, Dr. Muhammad Anisuzzaman
dc.contributor.author Asif Ahmed
dc.date.accessioned 2015-07-26T08:46:30Z
dc.date.available 2015-07-26T08:46:30Z
dc.date.issued 2014-06
dc.identifier.uri http://lib.buet.ac.bd:8080/xmlui/handle/123456789/665
dc.description.abstract Since the first demonstration of quantum cascade lasers (QCLs) in 1994, there has been extensive research on their improvements as QCLs have potential applications in remote chemical sensing and pollution monitoring. By incorporating a distributed feedback (DFB) grating in a QCL structure, single-mode operation with narrower linewidth has been achieved. The coupling coefficient of a DFBQCL is one of the most important parameters to be considered for manipulating the behavior of the device. In this thesis, we have modeled this parameter using Coupled-Wave theory and observed its dependance on various design parameters such as temperature, grating depth, grating period, tooth angle, duty cycle, and grating shape. It has been found that the value of the coupling coefficient is greatly design-dependent. Since the higher its value, the better the performance of the DFB-QCL to select a single-mode, the design parameters can be changed to obtain a high value of the coupling coefficient. We have also developed a model to obtain the output optical power from a a DFB-QCL. A wide range of operating parameters have been varied to design a stable DFB-QCL for single-mode operation. It has been found that for every design of a DFB-QCL structure, there is an optimum grating depth, grating period and grating shape for which single-mode operation with high value of side-mode suppression ratio (SMSR) is possible. en_US
dc.language.iso en en_US
dc.publisher Department of Electrical and Electronic Engineering en_US
dc.subject Semiconductor lasers en_US
dc.title Analysis of diffraction grating induced distributed feedback for stable single mode quantum cascade lasers en_US
dc.type Thesis-MSc en_US
dc.contributor.id 0412062210 en_US
dc.identifier.accessionNumber 113035
dc.contributor.callno 623.661/ASI/2014 en_US


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