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半导体量子点连续泵浦激光研究进展(英文)

发布时间:2022-02-24 05:30
  连续激光器是光子芯片的关键部件.低阈值、高效率、长寿命、低成本、易集成的连续激光器一直是科学界和工业界追求的目标之一.量子点具有荧光量子产率高、发光波长可调、易于集成等优点,是一种优异的激光增益材料.根据制备工艺的不同,量子点可分为外延生长的量子点和溶液制备的胶体量子点.本文综述了使用外延生长方法制备的Ⅲ-V半导体量子点和胶体量子点连续激光器的研究进展,详细讨论了胶体量子点实现连续激光所面临的困难和挑战,总结了钙钛矿连续波激光器研究的进展.最后,讨论了量子点连续激光器实现光子芯片集成应用所面临的挑战. 

【文章来源】:Science China Materials. 2020,63(08)EISCICSCD

【文章页数】:16 页

【文章目录】:
INTRODUCTION
III–V SEMICONDUCTOR QD CW LASERS
    III–V semiconductor QD CW lasers on Ge or Ge-on-Si substrates
    III–V semiconductor QD CW lasers on Si substrates
    III–V semiconductor QD MD CW laser on Si substrates
COLLOIDAL NANOMATERIAL-BASED CW LASERS
    Challenges for CQD CW lasers
    Cd Se and Hg Te CQD-based quasi-CW or CW lasers
    Perovskite-based quasi-CW or CW lasers
CONCLUSION AND OUTLOOK


【参考文献】:
期刊论文
[1]Recent progress in epitaxial growth of Ⅲ–Ⅴ quantum-dot lasers on silicon substrate[J]. Shujie Pan,Victoria Cao,Mengya Liao,Ying Lu,Zizhuo Liu,Mingchu Tang,Siming Chen,Alwyn Seeds,Huiyun Liu.  Journal of Semiconductors. 2019(10)
[2]Research progress of low-dimensional metal halide perovskites for lasing applications[J]. 刘镇,李淳,尚秋宇,赵丽云,钟阳光,高燕,杜文娜,米阳,陈杰,张帅,刘新风,付英双,张青.  Chinese Physics B. 2018(11)
[3]Continuous-wave lasing in halide perovskites[J]. Xiaoxia Wang,Xiao Wang,Anlian Pan.  Science China Materials. 2018(09)



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