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Dynamic analysis on external optical-feedback-resistant characteristics in partially corrugated waveguide laser diodes

机译:部分波纹波导激光二极管外部光学反馈特性的动态分析

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This paper clarifies superior external optical feedback resistant characteristics in partially-corrugated-waveguide laser diodes (PC-LDs), compared to conventional distributed feedback laser diodes (DFB-LDs). Based on a novel large single dynamic analysis by using the van der Pol equations in single-mode laser diodes (LDs), it is found that the external optical feedback resistance in single-mode LDs is dominated by the transient fluctuation of mirror loss (total net threshold gain), and depends on the grating phases at the cleaved facets. Theoretical results predict that in the PC-LDs, mirror loss is insensitive to the grating facet phases due to a unique waveguide, which consists of a corrugated waveguide near the antireflection-coated front facet and an uncorrugated waveguide near the high- reflection-coated rear facet. Therefore the variation of phase conditions for oscillation caused by the external optical feedback gives rise to a relative low transient fluctuation of the mirror loss that suppresses the positive feedback effect of mirror loss, as well as the optical output fluctuations. Furthermore, optimum-grating length, i.e. 150 $mu@m for 250 $mu@m cavity length, was derived by the calculations. The relative intensity noise (RIN) caused by external optical feedback was measured for PC-LDs with different grating length over a wide feedback level range from $MIN@40 dB to $MIN@20 dB. Experimental results show that, for the cavity length of 250 $mu@m, the PC-LDs with a grating length of 150 $mu@m have the most excellent external optical feedback resistant characteristics. The increase of RIN was suppressed to as low as $MIN@126 dB/Hz with the external optical feedback of $MIN@20 dB. These results agreed well with the theoretical analysis.
机译:本文阐明在局部波纹波导激光二极管(PC-LD)的优异的外部光学反馈抗性的特性,相对于传统的分布式反馈激光二极管(DFB-LD)的。基于通过使用范德在单模激光二极管波尔方程(LD)的一种新颖的大单动态分析,可以发现,在单模式激光二极管的外部光学反馈电阻由镜面损耗的瞬时波动(总为主净阈值增益),和取决于在解理面的光栅相。理论结果预测,在PC-LDS,反射损耗是不敏感的光栅面相位由于独特的波导,它由防反射涂层前刻面附近的波纹波导和附近的高反射涂层后面的非波纹波导的面。因此对于所造成的外部光反馈振荡相位条件的变化产生了抑制镜面损耗的正反馈效应,以及光输出的波动的反射损耗的相对低瞬态的波动。此外,最佳的光栅长度,即$ 150亩@米为250 $亩@米腔长度,通过计算得到。测定用于通过从$ MIN宽反馈电平范围内的PC-LD的具有不同光栅长度引起的外部光反馈的相对强度噪声(RIN)@40分贝到$ MIN @20分贝。实验结果表明,对于250 $亩@米的腔长度,该PC-LDS具有$ 150亩@米光栅长度具有最优异的外部光学反馈抗性特性。 RIN的增加被抑制到低至$ MIN @126分贝/赫兹$ MIN @20分贝的外部光学反馈。这些结果与理论分析吻合。

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