Half-opened cavity random distributed feedback laser with FBG wavelength variation

A. Jamalud-din, S. Hitam, M. H. A. Bakar
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Abstract

The work presented in this paper is on a backward-pumped Raman random distributed feedback laser with half-opened cavity configuration. Rayleigh backscattering effects were realized in a 41 km fiber length that functioned as a virtual mirror at one fiber end while at the other end, a single fiber Bragg grating with different central wavelength is deployed as a reflector. Pump power threshold, output power and efficiency that corresponding to FBG wavelengths of 1546.8 nm, 1550.4 nm and 1557.7 nm are studied. The obtained results show that the peak reflection wavelength of FBG nearest to the first Raman Stokes shift gives better threshold and output power, hence, improves the efficiency of random lasing.
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半开腔随机分布反馈光纤光栅波长变化激光器
本文研究了一个半开腔结构的后向抽运拉曼随机分布反馈激光器。在41 km长的光纤中实现瑞利后向散射效应,该光纤一端作为虚拟镜面,另一端部署不同中心波长的单光纤布拉格光栅作为反射器。研究了FBG波长分别为1546.8 nm、1550.4 nm和1557.7 nm时的泵浦功率阈值、输出功率和效率。结果表明,最接近第一拉曼斯托克斯位移的光纤光栅反射峰值波长具有较好的阈值和输出功率,从而提高了随机激光的效率。
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