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Large-signal dynamic behavior of distributed-feedback lasers including lateral effects

机译:分布反馈激光器的大信号动态行为,包括横向效应

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摘要

The large-signal behavior of DFB lasers is analyzed, including lateral as well as longitudinal variations in carrier density, photon density, and refractive index. The effective index method and other approximations are used to reduce the complex three-dimensional problem to one dimension. The coupled wave and carrier rate equations are then solved in a self-consistent manner. Lateral spatial carrier hole burning and lateral diffusion are found to affect the relaxation oscillation frequency and damping rate of DFB lasers, depending on their detailed structure. The effective time-averaged linewidth enhancement factor is also affected. In symmetric AR-coated λ/4 phase-shifted lasers the side mode suppression ratio can be deteriorated significantly by lateral spatial hole burning when kL is large.
机译:分析了DFB激光器的大信号行为,包括载流子密度,光子密度和折射率的横向和纵向变化。使用有效指数法和其他近似方法将复杂的三维问题简化为一维。然后,以自洽的方式求解耦合的波和载波速率方程。发现横向空间载流子孔燃烧和横向扩散会影响DFB激光器的弛豫振荡频率和阻尼率,具体取决于其详细结构。有效的时间平均线宽增强因子也会受到影响。在k值较大时,在对称的增透膜的λ/ 4相移激光器中,侧向模式抑制比会因横向空间烧孔而显着降低。

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