Title :
Comprehensive modeling of diffused quantum-well vertical-cavity surface-emitting lasers
Author :
Man, W.M. ; Yu, S.F.
Author_Institution :
Dept. of Electr. & Electron. Eng., Hong Kong Univ., Hong Kong
Abstract :
A numerical model for investigating the thermal, electrical, and optical characteristics of vertical-cavity surface-emitting: lasers (VCSELs) with a diffused quantum-well (QW) structure is presented. In the model, the quasi-three-dimensional (quasi-3-D) distribution of temperature, voltage and optical fields as well as the quasi-two-dimensional (quasi-2-D) diffusion and recombination of carrier concentration inside the QW active layer are calculated in a self-consistent manner. In addition, the quasi-3-D distribution of implanted ions before and after thermal annealing are computed. The variation of electrical conductivity and absorption loss as well as the influence of impurity induced compositional disordering on the optical gain and refractive index of the QW active layer are also taken into consideration. Using this model, the steady-state characteristics of diffused QW VCSELs are studied theoretically. It is shown that significant improvement of stable single-mode operation can be obtained using diffused QW structure
Keywords :
annealing; carrier density; chemical interdiffusion; diffusion; ion implantation; laser cavity resonators; laser theory; optical losses; quantum well lasers; semiconductor device models; surface emitting lasers; QW active layer; VCSEL; carrier concentration; comprehensive modeling; diffused QW VCSEL; diffused QW structure; diffused quantum-well vertical-cavity surface-emitting laser modelling; electrical characteristics; implanted ion distribution; numerical model; optical characteristics; quasi-2D diffusion; quasi-3-D distribution; quasi-3D distribution; self-consistent manner; stable single-mode operation; steady-state characteristics; thermal characteristics; Laser modes; Numerical models; Optical refraction; Optical variables control; Particle beam optics; Quantum well lasers; Quantum wells; Surface emitting lasers; Temperature distribution; Vertical cavity surface emitting lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/2944.720484