Zhang Peng, Wu Di, Du Quanli, Li Xiaoyan, Han Kexuan, Zhang Lizhong, Wang Tianshu, Jiang Huilin
Appl Opt. 2017 Dec 10;56(35):9742-9748. doi: 10.1364/AO.56.009742.
A 1.7 μm band tunable narrow-linewidth Raman fiber laser based on spectrally sliced amplified spontaneous emission (SS-ASE) and multiple filter structures is proposed and experimentally demonstrated. In this scheme, an SS-ASE source is employed as a pump source in order to avoid stimulated Brillouin scattering. The ring configuration includes a 500 m long high nonlinear optical fiber and a 10 km long dispersion shifted fiber as the gain medium. A segment of un-pumped polarization-maintaining erbium-doped fiber is used to modify the shape of the spectrum. Furthermore, a nonlinear polarization rotation scheme is applied as the wavelength selector to generate lasers. A high-finesse ring filter and a ring filter are used to narrow the linewidth of the laser, respectively. We demonstrate tuning capabilities of a single laser over 28 nm between 1652 nm and 1680 nm by adjusting the polarization controller (PC) and tunable filter. The tunable laser has a 0.023 nm effective linewidth with the high-finesse ring filter. The stable multi-wavelength laser operation of up to four wavelengths can be obtained by adjusting the PC carefully when the pump power increases.
提出并通过实验证明了一种基于光谱切片放大自发辐射(SS-ASE)和多重滤波器结构的1.7μm波段可调谐窄线宽拉曼光纤激光器。在该方案中,采用SS-ASE源作为泵浦源以避免受激布里渊散射。环形结构包括一段500m长的高非线性光纤和一段10km长的色散位移光纤作为增益介质。一段未泵浦的保偏掺铒光纤用于改变光谱形状。此外,应用非线性偏振旋转方案作为波长选择器来产生激光。分别使用一个高精细度环形滤波器和一个环形滤波器来窄化激光器的线宽。通过调整偏振控制器(PC)和可调谐滤波器,我们展示了单个激光器在1652nm至1680nm之间28nm范围内的调谐能力。使用高精细度环形滤波器时,可调谐激光器的有效线宽为0.023nm。当泵浦功率增加时,通过仔细调整PC,可以获得多达四个波长的稳定多波长激光运转。