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首页> 外文期刊>The European physical journal. Applied physics >Optimisation of an asymmetric three phase-shift distributed feedback semiconductor laser
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Optimisation of an asymmetric three phase-shift distributed feedback semiconductor laser

机译:非对称三相移分布式反馈半导体激光器的优化

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摘要

This paper shows that accurately optimised asymmetric three phase-shift (3PS)-distributed feedback (DFB) laser structures can strongly improve the stability of the single-longitudinal mode (SLM) operation, described by the mode selectivity and the flatness of the photon density profile, through an extended range of current injection, when compared to optimised symmetric 3PS-DFB structures reported elsewhere. This study reveals its importance in modern high bit-rate optical communication systems, by enhancing the possibility of attaining high performance DFB lasers, in easily fabricated structures. The procedure, based on matrix techniques, aims at the description of the optimal design of the laser structure and it is described step-by-step. Above-threshold calculations have been accomplished to evaluate the performance of the optimised asymmetric 3PS-DFB structure, namely: the mode selectivity (S), the flatness, the lasing wavelength, the optical power, and the side-mode suppression ratio (SMSR) evolutions with the current injection. For a current injection five times bigger than the threshold current, substantially improvements in S (five times bigger) and in the SMSR (about 9 dB higher) are achieved when compared to similar, but symmetric, DFB structures.
机译:本文表明,精确优化的非对称三相移(3PS)分布反馈(DFB)激光结构可以极大地提高单纵模(SLM)操作的稳定性,这可以通过模式选择性和光子密度的平坦度来描述与其他地方报道的优化的对称3PS-DFB结构相比,通过电流注入的扩展范围,可以得到更好的轮廓。这项研究通过提高在易于制造的结构中获得高性能DFB激光器的可能性,揭示了其在现代高比特率光通信系统中的重要性。该程序基于矩阵技术,旨在描述激光结构的最佳设计,并逐步进行描述。已完成阈值以上的计算,以评估优化的非对称3PS-DFB结构的性能,即:模式选择性(S),平坦度,激光波长,光功率和侧模抑制比(SMSR)当前注入的演变。与类似但对称的DFB结构相比,对于电流注入而言,其电流注入是阈值电流的五倍,S的改善(大五倍)和SMSR的改善(高出约9 dB)。

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