An enhancement of the side mode suppression ratio, by utilizing interdiffused quantum wells, of a λ/4 shifted distributed feedback laser is demonstrated theoretically. It is found that by introducing a diffusion step along the longitudinal direction of the quantum-well active region, the suppression ratio can be improved significantly for large /spl kappa/L (>2.6) devices. The maximum power for single longitudinal mode operation is increased by more than 50 mW.published_or_final_versio
Dynamic behavior of a double-tapered-waveguide (DTWG) distributed feedback (DFB) semiconductor laser...
This paper shows that accurately optimised asymmetric three phase-shift (3PS)-distributed feedback (...
The paper presents simulation studies targeting high-power narrow-linewidth emission from semiconduc...
Distributed feedback (DFB) and Fabry-Perot (FP) semiconductor lasers with step and periodic interdif...
The large-signal behavior of DFB lasers is analyzed, including lateral as well as longitudinal varia...
The use of diffused quantum well structures to enhance single transverse mode operation in vertical ...
(DFB) lasers and optical amplifiers will be theoretically analyzed in this paper. For DFB lasers, a ...
This article analyzes compact laterally coupled distributed feedback DFB lasers with three defect ...
Theoretical analysis of double-tapered-waveguide distributed feedback semiconductor laser for stable...
We assess the relative merits and prospects of using diffused quantum-well (QW) structures in semico...
A simple, but powerful, quasi-three-dimensional large-signal dynamic model of distributed feedback s...
We have analyzed theoretically the effects of interdiffusion on the gain, differential gain, linewid...
A quasi-3 D simulation for quantum well (QW) distributed feedback (DFB) laser diodes is presented. L...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
We will present results for an Al0.24Ga0.76As/GaAs diffused multiple quantum well with five periods ...
Dynamic behavior of a double-tapered-waveguide (DTWG) distributed feedback (DFB) semiconductor laser...
This paper shows that accurately optimised asymmetric three phase-shift (3PS)-distributed feedback (...
The paper presents simulation studies targeting high-power narrow-linewidth emission from semiconduc...
Distributed feedback (DFB) and Fabry-Perot (FP) semiconductor lasers with step and periodic interdif...
The large-signal behavior of DFB lasers is analyzed, including lateral as well as longitudinal varia...
The use of diffused quantum well structures to enhance single transverse mode operation in vertical ...
(DFB) lasers and optical amplifiers will be theoretically analyzed in this paper. For DFB lasers, a ...
This article analyzes compact laterally coupled distributed feedback DFB lasers with three defect ...
Theoretical analysis of double-tapered-waveguide distributed feedback semiconductor laser for stable...
We assess the relative merits and prospects of using diffused quantum-well (QW) structures in semico...
A simple, but powerful, quasi-three-dimensional large-signal dynamic model of distributed feedback s...
We have analyzed theoretically the effects of interdiffusion on the gain, differential gain, linewid...
A quasi-3 D simulation for quantum well (QW) distributed feedback (DFB) laser diodes is presented. L...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
We will present results for an Al0.24Ga0.76As/GaAs diffused multiple quantum well with five periods ...
Dynamic behavior of a double-tapered-waveguide (DTWG) distributed feedback (DFB) semiconductor laser...
This paper shows that accurately optimised asymmetric three phase-shift (3PS)-distributed feedback (...
The paper presents simulation studies targeting high-power narrow-linewidth emission from semiconduc...