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首页> 外文期刊>Lightwave Technology, Journal of >Gaussian-Like Mode Field Generated in a Seven-Core Photonic Crystal Fiber for Low Loss Splicing by Air Hole Collapse Technique
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Gaussian-Like Mode Field Generated in a Seven-Core Photonic Crystal Fiber for Low Loss Splicing by Air Hole Collapse Technique

机译:气孔塌陷技术在低损耗熔接的七芯光子晶体光纤中产生高斯样模场

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摘要

Multicore photonic crystal fiber is an important research direction to realize high-power supercontiuum. We report two post processing methods based on air hole collapse technique to generate Gaussian-like mode field in a seven-core photonic crystal fiber (SCPCF) for low loss splicing. By heating and collapsing all air holes in the meantime, the mode field of SCPCF becomes more concentrated and the valleys between separated core modes become much flatter. Another method to generate Gaussian-like mode field is selectively collapsing the central air holes between the seven cores, which can form an integrated larger core. Theoretical simulation results are confirmed by experiment and both methods are used to decrease mode field mismatch between SCPCF and double clad fiber with splicing losses as low as 0.46 and 0.22 dB, respectively.
机译:多芯光子晶体光纤是实现大功率超导的重要研究方向。我们报告了两种基于气孔塌陷技术的后处理方法,以在七芯光子晶体光纤(SCPCF)中生成高斯型模场,以实现低损耗拼接。通过同时加热和收缩所有气孔,SCPCF的模场变得更加集中,分离的核心模之间的谷变得更加平坦。产生类似高斯模式场的另一种方法是有选择地塌陷七个磁芯之间的中央气孔,这可以形成一个集成的较大磁芯。实验证明了理论仿真结果,两种方法都可以减少SCPCF和双包层光纤的模场不匹配,拼接损耗分别低至0.46和0.22dB。

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