Jeong Hwanseong, Choi Sun Young, Kim Mi Hye, Rotermund Fabian, Cha Yong-Ho, Jeong Do-Young, Lee Sang Bae, Lee Kwanil, Yeom Dong-Il
Opt Express. 2016 Jun 27;24(13):14152-8. doi: 10.1364/OE.24.014152.
We demonstrate an all-fiber Tm-doped soliton laser with high power by using a monolayer graphene saturable absorber (SA). Large area, uniform monolayer graphene was transferred to the surface of the side-polished fiber (SPF) to realize an in-line graphene SA that operates around 2 μm wavelength. To increase the nonlinear interaction with graphene, we applied an over-cladding onto the SPF, where enhanced optical absorption at monolayer graphene was observed. All-fiber Tm-doped mode-locked laser was built including our in-line graphene SA, which stably delivered the soliton pulses with 773 fs pulse duration. The measured 3-dB spectral bandwidth was 5.14 nm at the wavelength of 1910 nm. We obtained the maximum average output power of 115 mW at a repetition rate of 19.31 MHz. Corresponding pulse energy was estimated to be 6 nJ, which is the highest value among all-fiber Tm-doped soliton oscillators using carbon-material-based SAs.
我们展示了一种通过使用单层石墨烯可饱和吸收体(SA)实现的高功率全光纤掺铥孤子激光器。将大面积、均匀的单层石墨烯转移到侧面抛光光纤(SPF)表面,以实现工作在2μm波长附近的在线石墨烯SA。为了增强与石墨烯的非线性相互作用,我们在SPF上施加了外包层,观察到单层石墨烯处的光吸收增强。构建了包括我们的在线石墨烯SA的全光纤掺铥锁模激光器,其稳定输出脉宽为773 fs的孤子脉冲。在1910 nm波长处测得的3 dB光谱带宽为5.14 nm。在19.31 MHz的重复频率下,我们获得了115 mW的最大平均输出功率。相应的脉冲能量估计为6 nJ,这是所有使用碳基SA的全光纤掺铥孤子振荡器中的最高值。