Dreamcatcher分享 http://blog.sciencenet.cn/u/BaoQiaoliang 碳纳米材料,微纳米结构,光电子器件

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原子层石墨烯作为饱和吸收体产生超快脉冲激光

已有 10900 次阅读 2009-9-6 22:05 |个人分类:Graphene Research|系统分类:科研笔记| Nonlinear, Optics, Photonics

Title: Atomic layer graphene as saturable absorber for ultrafast pulsed lasers

The optical conductance of monolayer graphene is defined solely by the fine structure constant, α = e2/hc (where e is the electron charge, h is Dirac’s constant and c is the speed of light). The absorbance has been predicted to be independent of frequency. In principle, the interband optical absorption in zero-gap graphene could be saturated readily under strong excitation due to Pauli blocking. Here, we demonstrate the use of atomic layer graphene as saturable absorber in a mode-locked fiber laser for the generation of ultrashort soliton pulses (756 fs) at the telecommunication band. The modulation depth can be tuned in a wide range from 66.5% to 6.2% by varying the thickness of graphene. Our results suggest that ultrathin graphene films are potentially useful as optical elements in fiber lasers. Graphene as a laser mode locker can have many merits such as lower saturation intensity, ultrafast recovery time, tunable modulation depth and wideband tuneability.



DOI: 10.1002/adfm.200901007



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