饱和吸收
量子点激光器
量子点
光电子学
激光器
材料科学
半导体
模式锁定
超短脉冲
半导体激光器理论
光学
钛宝石激光器
背景(考古学)
光纤激光器
可调谐激光器
物理
古生物学
生物
作者
A.A. Lagatsky,C. G. Leburn,C.T.A. Brown,W. Sibbett,Svetlana A. Zolotovskaya,Edik U. Rafailov
标识
DOI:10.1016/j.pquantelec.2009.11.001
摘要
Some key recent achievements in the development of novel saturable absorbers that are based on semiconductor quantum-dot (QD) structures for the passive mode locking of near-infrared lasers are outlined. These are group IV–VI semiconductor nanoparticles (quantum dots) in glass matrices and self-assembled semiconductor quantum dots (group III–V) grown on semiconductor mirrors (QD-SESAMs). The performance of solid-state (Yb3+, Nd3+ and Cr4+-based), Yb-doped fibre and monolithically integrated semiconductor lasers has been described within the context of ultrashort-pulse generation using these types of QD-based modulators. Particular attention has been paid to the nonlinear parameters of the QD-based saturable absorbers that determine the quality of the mode locking in such laser systems.
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