Koo Joonhoi, Park June, Lee Junsu, Jhon Young Min, Lee Ju Han
Opt Express. 2016 May 16;24(10):10575-89. doi: 10.1364/OE.24.010575.
We experimentally demonstrate the use of a bulk-like, MoSe-based saturable absorber (SA) as a passive harmonic mode-locker for the production of femtosecond pulses from a fiber laser at a repetition rate of 3.27 GHz. By incorporating a bulk-like, MoSe/PVA-composite-deposited side-polished fiber as an SA within an erbium-doped-fiber-ring cavity, mode-locked pulses with a temporal width of 737 fs to 798 fs can be readily obtained at various harmonic frequencies. The fundamental resonance frequency and the maximum harmonic-resonance frequency are 15.38 MHz and 3.27 GHz (212th harmonic), respectively. The temporal and spectral characteristics of the output pulses are systematically investigated as a function of the pump power. The output pulses exhibited Gaussian-temporal shapes irrespective of the harmonic order, and even when their spectra possessed hyperbolic-secant shapes. The saturable absorption and harmonic-mode-locking performance of our prepared SA are compared with those of previously demonstrated SAs that are based on other transition metal dichalcogenides (TMDs). To the best of the authors' knowledge, the repetition rate of 3.27 GHz is the highest frequency that has ever been demonstrated regarding the production of femtosecond pulses from a fiber laser that is based on SA-induced passive harmonic mode-locking.
我们通过实验证明了使用块状的、基于MoSe的可饱和吸收体(SA)作为被动谐波锁模器,以3.27 GHz的重复频率从光纤激光器产生飞秒脉冲。通过将块状的、沉积有MoSe/PVA复合材料的侧面抛光光纤作为SA纳入掺铒光纤环形腔中,在各种谐波频率下都可以轻松获得时间宽度为737 fs至798 fs的锁模脉冲。基波共振频率和最大谐波共振频率分别为15.38 MHz和3.27 GHz(第212次谐波)。作为泵浦功率的函数,系统地研究了输出脉冲的时间和光谱特性。无论谐波阶数如何,输出脉冲都呈现高斯时间形状,即使其光谱具有双曲正割形状。我们制备的SA的可饱和吸收和谐波锁模性能与先前展示的基于其他过渡金属二卤化物(TMD)的SA的性能进行了比较。据作者所知,3.27 GHz的重复频率是基于SA诱导的被动谐波锁模从光纤激光器产生飞秒脉冲方面所展示的最高频率。