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Simulations and analysis of beam quality improvement in spatially modulated broad area edge-emitting devices

机译:空间调制广域边缘发射器件中光束质量改善的仿真和分析

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We simulate and analyze how beam quality improves while being amplified in edge emitting broad area semiconductor amplifiers with a periodic structuring of the electrical contacts, in both longitudinal and lateral directions. A spatio-temporal traveling wave model is used for simulations of the dynamics and nonlinear interactions of the optical fields, induced polarizations and carrier density. In the case of small beam amplification, the optical field can be expanded into few Bloch modes, so that the system is described by a set of ODEs for the evolution of the mode amplitudes. The analysis of such model provides a deep understanding of the impact of the different parameters on amplification and on spatial (angular) filtering of the beam. It is shown that under realistic parameters the two-dimensional modulation of the current can lead not only to a significant reduction of the emission divergence, but also to an additional amplification of the emitted field.
机译:我们模拟和分析光束质量如何在边沿发射的广域半导体放大器中进行放大,同时在纵向和横向两个方向上对电触点进行周期性构造。时空行波模型用于模拟光场,感应极化和载流子密度的动力学和非线性相互作用。在小光束放大的情况下,可以将光场扩展为几个Bloch模式,从而用一组ODE来描述该系统,以扩展模式振幅。这种模型的分析提供了对不同参数对光束的放大和空间(角度)滤波的影响的深刻理解。结果表明,在实际参数下,电流的二维调制不仅会导致发射散度的显着减小,而且还会导致发射场的额外放大。

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