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Effects of n-type modulation-doping barriers and a linear graded-composition GaInAsP intermediate layer on the 1.3 μm AlGaInAs/AlGaInAs strain-compensated multiple-quantum-well laser diodes

机译:n型调制掺杂势垒和线性梯度成分GaInAsP中间层对1.3μmAlGaInAs / AlGaInAs应变补偿多量子阱激光二极管的影响

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摘要

[[abstract]]strain-compensated multiple-quantum-well (SC-MQW) laser structures: (1) sample A—with only an undoped SC-MQW active region, (2) sample B—with an undoped SC-MQW active region and a linear graded-composition (LGC) GaInAsP intermediate layer, (3) sample C—with an n-type modulation-doping (MD) SC-MQW active region, and (4) sample D—with an n-type MD-SC-MQW active region combined with a LGC GaInAsP intermediate layer. The inclusion of either n-type modulation-doped SC-MQW active region or LGC GaInAsP intermediate layer can improve the performance of a laser diode (LD). The LD sample D, which includes both an n-type MD-SC-MQW active region and a LGC GaInAsP intermediate layer, exhibits the best overall performance including a threshold current of 12.5 mA, a characteristic temperature of 85 K in 20–80 °C temperature range, a lasing wavelength shift of 0.38 nm/K, and a relaxation frequency response of 9.9 GHz.
机译:[[抽象]]应变补偿多量子阱(SC-MQW)激光结构:(1)样品A —仅具有未掺杂的SC-MQW有源区,(2)样品B —具有未掺杂的SC-MQW有源区域和线性渐变成分(LGC)GaInAsP中间层,(3)样品C —具有n型调制掺杂(MD)SC-MQW有源区,以及(4)样品D —具有n型MD -SC-MQW有源区与LGC GaInAsP中间层结合。包含n型调制掺杂的SC-MQW有源区或LGC GaInAsP中间层可以提高激光二极管(LD)的性能。 LD样品D包括n型MD-SC-MQW有源区和LGC GaInAsP中间层,展现出最佳的整体性能,包括12.5 mA的阈值电流,20–80°的特征温度为85 K温度范围为C,激射波长偏移为0.38 nm / K,弛豫频率响应为9.9 GHz。

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  • 作者

    P. H. Lei;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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