Huang Pi Ling, Lin Shau-Ching, Yeh Chao-Yung, Kuo Hsin-Hui, Huang Shr-Hau, Lin Gong-Ru, Li Lain-Jong, Su Ching-Yuan, Cheng Wood-Hi
Department of Photonics, National Sun Yat-sen University, Kaohsiung, Taiwan.
Opt Express. 2012 Jan 30;20(3):2460-5. doi: 10.1364/OE.20.002460.
A stable mode-locked fiber laser (MLFL) employing multi-layer graphene as saturable absorber (SA) is presented. The multi-layer graphene were grown by chemical vapor deposition (CVD) on Ni close to A-A stacking. Linear absorbance spectrum of multi-layer graphene was observed without absorption peak from 400 to 2000 nm. Optical nonlinearities of different atomic-layers (7-, 11-, 14-, and 21- layers) graphene based SA are investigated and compared. The results found that the thicker 21-layer graphene based SA exhibited a smaller modulation depth (MD) value of 2.93% due to more available density of states in the band structure of multi-layer graphene and favored SA nonlinearity. A stable MLFL of 21-layer graphene based SA showed a pulsewidth of 432.47 fs, a bandwidth of 6.16 nm, and a time-bandwidth product (TBP) of 0.323 at fundamental soliton-like operation. This study demonstrates that the atomic-layer structure of graphene from CVD process may provide a reliable graphene based SA for stable soliton-like pulse formation of the MLFL.
本文介绍了一种采用多层石墨烯作为可饱和吸收体(SA)的稳定锁模光纤激光器(MLFL)。多层石墨烯通过化学气相沉积(CVD)在接近A - A堆叠的镍上生长。观察到多层石墨烯的线性吸收光谱在400至2000 nm范围内没有吸收峰。研究并比较了基于不同原子层数(7层、11层、14层和21层)石墨烯的SA的光学非线性。结果发现,由于多层石墨烯能带结构中更多的可用态密度,基于21层石墨烯的较厚SA表现出较小的调制深度(MD)值,为2.93%,且有利于SA非线性。基于21层石墨烯SA的稳定MLFL在类基孤子运行时显示出432.47 fs的脉冲宽度、6.16 nm的带宽和0.323的时间带宽积(TBP)。这项研究表明,CVD工艺中石墨烯的原子层结构可为MLFL的稳定类孤子脉冲形成提供可靠的基于石墨烯的SA。