The mode-locked characteristics of a quantum dot hybrid soliton pulse source (QD-HSPS) utilising a linearly chirped fibre Bragg grating (FBG) are investigated using the time-domain solution of coupled wave equations and rate equations. The effect of carrier dynamics on the output pulse of the QD-HSPS is also described. The numerical results indicate that the spontaneous coupling factor, carrier recombination time in QD and the length of the laser strongly affect the system operation, whereas there is no significant effect of carrier recombination in the wetting layer or of the carrier emission from the QD to the wetting layer or of the relaxation time from the wetting layer to the QD. Furthermore, it is also shown that by using the optimum ...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
We present the intensity noise characteristics of an actively mode-locked quantum-dot hybrid soliton...
We have developed a Time Domain Travelling Wave numerical model to study single section Fabry-Perot ...
In this review, the potential of mode-locked lasers based on advanced quantum-dot ( QD) active media...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
The noise and mode-locking phenomena of a hybrid soliton pulse source (HSPS) utilizing different fi...
The noise and mode-locking phenomena of a hybrid soliton pulse source (HSPS) utilizing different fi...
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
We study the characteristics of ground-state and excite-state mode-locked pulse trains generated fro...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
We present the intensity noise characteristics of an actively mode-locked quantum-dot hybrid soliton...
We have developed a Time Domain Travelling Wave numerical model to study single section Fabry-Perot ...
In this review, the potential of mode-locked lasers based on advanced quantum-dot ( QD) active media...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
The noise and mode-locking phenomena of a hybrid soliton pulse source (HSPS) utilizing different fi...
The noise and mode-locking phenomena of a hybrid soliton pulse source (HSPS) utilizing different fi...
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
We study the characteristics of ground-state and excite-state mode-locked pulse trains generated fro...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
This paper presents the current status of our research in mode-locked quantum-dot edge-emitting lase...