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Dynamics of InAs/GaAs quantum dot lasers epitaxially grown on Ge or Si substrate

Dynamics of InAs/GaAs quantum dot lasers epitaxially grown on Ge or Si substrate
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摘要 Growing semiconductor laser sources on silicon is a crucial but challenging technology for developing photonic integrated circuits(PICs).InAs/GaAs quantum dot(Qdot)lasers have successfully circumvented the mismatch problem betweenⅢ–Ⅴmaterials and Ge or Si,and have demonstrated efficient laser emission.In this paper,we review dynamical characteristics of Qdot lasers epitaxially grown on Ge or Si,in comparison with those of Qdot lasers on native GaAs substrate.We discuss properties of linewidth broadening factor,laser noise and its sensitivity to optical feedback,intensity modulation,as well as mode locking operation.The investigation of these dynamical characteristics is beneficial for guiding the design of PICs in optical communications and optical computations. Growing semiconductor laser sources on silicon is a crucial but challenging technology for developing photonic integrated circuits(PICs). InAs/GaAs quantum dot(Qdot) lasers have successfully circumvented the mismatch problem between III–V materials and Ge or Si, and have demonstrated efficient laser emission. In this paper, we review dynamical characteristics of Qdot lasers epitaxially grown on Ge or Si, in comparison with those of Qdot lasers on native GaAs substrate. We discuss properties of linewidth broadening factor, laser noise and its sensitivity to optical feedback, intensity modulation, as well as mode locking operation. The investigation of these dynamical characteristics is beneficial for guiding the design of PICs in optical communications and optical computations.
出处 《Journal of Semiconductors》 EI CAS CSCD 2019年第10期74-84,共11页 半导体学报(英文版)
基金 supported by National Natural Science Foundation of China (No. 61804095) by Shanghai Pujiang Program (No. 17PJ1406500)
关键词 quantum DOT LASER LASER noise modulation DYNAMICS mode LOCKING PHOTONIC integrated circuits quantum dot laser laser noise modulation dynamics mode locking photonic integrated circuits
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