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Long-wavelength (1.3-1.5 micron) quantum dot lasers based on GaAs

机译:基于GaAs的长波长(1.3-1.5微米)量子点激光器

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The molecular beam epitaxy of self-assembled quantum dots (QDs) has reached a level such that the principal advantages of QD lasers can now be fully realized. We overview the most important recent results achieved to date including excellent device performance of 1.3 μm broad area and ridge waveguide lasers (J_(th)<150A/cm~2, I_(th)=1.4 mA, differential efficiency above 70%, CW 300 mW single lateral mode operation), suppression of non-linearity of QD lasers, which results to improved beam quality, reduced wavelength chirp and sensitivity to optical feedback. Effect of suppression of side wall recombination in QD lasers is also described. These effects give a possibility to further improve and simplify processing and fabrication of laser modules targeting their cost reduction. Recent realization of 2 mW single mode CW operation of QD VCSEL with all-semiconductor DBR is also presented. Long-wavelength QD lasers are promising candidate for mode-locking lasers for optical computer application. Very recently 1.7-ps-wide pulses at repetition rate of 20 GHz were obtained on mode-locked QD lasers with clear indication of possible shortening of pulse width upon processing optimization. First step of unification of laser technology for telecom range with QD-lasers grown on GaAs has been done. Lasing at 1.5 μm is achieved with threshold current density of 0.8 kA/cm2 and pulsed output power 7W.
机译:自组装量子点(QDS)的分子束外延已达到一个水平,使得QD激光器的主要优点现在可以完全实现。我们概述了迄今为止实现的最重要的最近结果,包括优异的设备性能为1.3μm宽面积和脊波导激光器(J_(TH)<150A / cm〜2,I_(TH)= 1.4 mA,差分效率高于70%,CW 300 MW单侧模式操作),抑制QD激光器的非线性,这导致深度光束质量,降低波长啁啾和对光学反馈的敏感性。还描述了QD激光器中侧壁重组的抑制效果。这些效果能够进一步提高和简化旨在降低成本的激光模块的加工和制造。还提出了最近实现了2 MW单模CW运行QD VCSEL与全半导体DBR的CW操作。长波长QD激光器是用于光学计算机应用的模式锁定激光器的候选者。最近在锁定QD激光器上获得了20GHz的重复率的1.7-PS-宽脉冲,并清楚地指示在处理优化时可能缩短脉冲宽度。完成了GaAs上生长的QD-Lasers的电信范围激光技术统一的第一步。以0.8ka / cm2的阈值电流密度和脉冲输出功率7w实现在1.5μm处实现。

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