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Low-loss polarization-maintaining fusion splicing of single-mode fibers and hollow-core photonic crystal fibers, relevant for monolithic fiber laser pulse compression

机译:单模光纤和空心光子晶体光纤的低损耗保偏熔接,与单片光纤激光脉冲压缩有关

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摘要

We report on highly reproducible low-loss fusion splicing of polarization-maintaining single-mode fibers (PM-SMFs) and hollow-core photonic crystal fibers (HC-PCFs). The PM-SMF-to-HC-PCF splices are characterized by the loss of 0.62 ± 0.24 dB, and polarization extinction ratio of 19 ± 0.68 dB. The reciprocal HC-PCF-to-PM-SMF splice loss is found to be 2.19 ± 0.33 dB, which is caused by the mode evolution in HC-PCF. The return loss in both cases was measured to be −14 dB. We show that a splice defect is caused by the HC-PCF cleave defect, and the lossy splice can be predicted at an early stage of the splicing process. We also demonstrate that the higher splice loss compromises the PM properties of the splice. Our splicing technique was successfully applied to the realization of a low-loss, environmentally stable monolithic PM fiber laser pulse compressor, enabling direct end-of-the-fiber femtosecond pulse delivery
机译:我们报告了保偏单模光纤(PM-SMFs)和空心光子晶体光纤(HC-PCFs)的高度可再现的低损耗熔接。 PM-SMF至HC-PCF接头的特点是损耗为0.62±0.24 dB,极化消光比为19±0.68 dB。 HC-PCF到PM-SMF的倒数接头损耗为2.19±0.33 dB,这是由HC-PCF中的模态演变引起的。两种情况下的回波损耗均为-14 dB。我们表明,一个拼接缺陷是由HC-PCF分裂缺陷引起的,并且可以在拼接过程的早期预测有损耗的拼接。我们还证明,较高的接头损耗会损害接头的PM性能。我们的拼接技术已成功应用于实现低损耗,环境稳定的整体式PM光纤激光脉冲压缩器,从而实现了光纤末尾飞秒脉冲的直接传送

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