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Novel Slow-Light Reflector Composed of a Fiber Ring Resonator and Low-Reflectivity Fiber Bragg Grating

机译:由光纤环形谐振器和低反射率光纤布拉格光栅组成的新型慢光反射器

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摘要

Slow-light components are attractive for many practical applications, such as narrow linewidth lasers and optical delay line. Characteristics of a novel slow-light reflector, which is composed of a fiber resonator and an extremely low reflectivity fiber Bragg grating (LRFBG), are proposed and analyzed theoretically and experimentally. Due to the light recirculating propagation in the fiber resonator by using a low split ratio coupler, the LRFBG inserted ring provides not only high reflectivity, but also an enlarged group delay, which shows a good slow-light property. In our research, the effective reflectance up to unity can be obtained when the FBG reflectivity and coupler split ratio reach to the critical values for lossless cases. Double peak resonant effects are also observed when the reflectivity of FBG is larger than the critical value. A supernarrow-linewidth fiber laser using the proposed slow-light reflector as its output cavity mirror is built experimentally to verify the analyzed results. It is believed that the proposed slow-light component will have some good applications due to the merits of compactness and low cost.
机译:慢光组件对于许多实际应用很有吸引力,例如窄线宽激光器和光学延迟线。提出并提出了由光纤谐振器和极低反射率的光纤布拉格光栅(LRFBG)组成的新型慢光反射器的特性,并在理论和实验上进行了分析。由于通过使用低分光比耦合器在光纤谐振器中进行光循环传播,LRFBG插入环不仅提供了高反射率,而且提供了更大的群延迟,从而显示了良好的慢光特性。在我们的研究中,当FBG反射率和耦合器分光比达到无损情况的临界值时,可以获得高达1的有效反射率。当FBG的反射率大于临界值时,也会观察到双峰共振效应。通过实验构建了一种以拟议中的慢光反射器作为输出腔镜的超窄线宽光纤激光器,以验证分析结果。相信由于紧凑和低成本的优点,提出的慢光组件将具有一些良好的应用。

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