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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Monolithic integration of a multiwavelength laser array associated with asymmetric sampled grating lasers
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Monolithic integration of a multiwavelength laser array associated with asymmetric sampled grating lasers

机译:与非对称采样光栅激光器相关联的多波长激光阵列的单片集成

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摘要

We present a novel approach for a monolithically integrated multiwavelength laser array based on asymmetric sampled grating lasers. The asymmetric sampled grating laser combines sampled gratings of different periods with an index shifter to utilize the first-order reflection for lasing operation. With this structure, a simple fabrication procedure as well as high yield could be achieved without using complex and time-consuming e-beam lithography for multiperiod gratings. With numerical analysis based on a transfer matrix method, the effect of grating strength and mirror coating was analyzed to improve single-mode and power extraction performance. By using high-reflection/antireflection coatings on both facets, it was shown theoretically that high-power extraction efficiency as well as high single-mode yield was achieved. A four-channel laser array with 400-GHz wavelength spacing was fabricated and its operation at designed wavelengths was demonstrated. The individual laser showed a threshold current of 9-13 mA and a slope efficiency of around 0.21 W/A. A high sidemode suppression ratio over 44 dB was observed as well.
机译:我们介绍了一种基于非对称采样光栅激光器的单片集成多波长激光阵列的新方法。非对称采样光栅激光器将不同时段的采样光栅与索引移位相结合以利用用于激光操作的一阶反射。利用这种结构,可以实现简单的制造程序以及高产率,而无需使用复杂且耗时的电子束光刻以进行多级光栅。利用基于转移矩阵法的数值分析,分析了光栅强度和镜面涂层的效果,提高了单模和功率提取性能。通过在两个小平面上使用高反射/抗反射涂层,理论上示出了高功率提取效率以及高电平的单模产量。制造了具有400GHz波长间距的四通道激光阵列,并证明了设计波长的操作。各个激光显示出9-13mA的阈值电流,斜率率约为0.21W / a。观察到高44dB的高侧面抑制比。

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