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Numerical analysis of static wavelength shift for DFB lasers with longitudinal mode spatial hole burning

机译:纵向模式空间烧孔的DFB激光器静态波长偏移的数值分析

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The static wavelength shift induced by longitudinal mode spatial hole burning is analyzed numerically for lambda /4-shifted DFB lasers. The effective Bragg wavelength at each bias level is introduced to clarify the contribution of nonuniformity in carrier density distribution to the lasing wavelength shift. It is shown that the wavelength shift is caused by two separate factors: by the position-dependent deviation and by the average value in the exact N/sub eq/ distribution. The former factor induces both red- and blue-shifted tuning due to the nonuniformity itself in carried density distribution, while the latter results in blue-shifted tuning due to the increase in modal gain.
机译:对于λ/ 4位移的DFB激光器,对由纵向模式空间烧孔引起的静态波长位移进行了数值分析。引入每个偏置水平的有效布拉格波长,以阐明载流子密度分布的不均匀性对激光波长偏移的影响。结果表明,波长偏移是由两个单独的因素引起的:与位置有关的偏差和确切的N / sub eq /分布中的平均值。前一个因素由于其自身在密度分布上的不均匀性而引起红移和蓝移的调谐,而后一个因模态增益的增加而导致蓝移的调谐。

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