Extremely small-core photonic crystal fiber fusion splicing with a single-mode fiber

B. Tibúrcio, G. Fernandes, A. Pinto
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Abstract

We present a low-loss fusion splicing of a non-linear photonic-crystal fiber (NL-PCF) with a single-mode fiber (SMF), helped by an intermediate fiber, using a electric-arc splicer. We also analysed the splice loss between SMF and intermediate fiber, as a function of the electrical discharge duration, to achieve a low-loss transition between SMF and intermediate fiber, through a thermally expanded core splice (TEC). The NL-PCF has a external cladding diameter of 105 μm, a core diameter of 1.7 μm and mode-field diameter (MFD) of 1.5 μm. We also performed mechanical strength tests to verify the robustness of the splice joints obtained.
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极小芯光子晶体光纤与单模光纤熔接
我们提出了一种低损耗的非线性光子晶体光纤(NL-PCF)与单模光纤(SMF)的融合剪接,在中间光纤的帮助下,使用电弧剪接器。我们还分析了SMF和中间光纤之间的拼接损耗,作为放电时间的函数,通过热膨胀芯拼接(TEC)实现SMF和中间光纤之间的低损耗转换。NL-PCF的外包层直径为105 μm,芯直径为1.7 μm,模场直径为1.5 μm。我们还进行了机械强度测试,以验证所获得的拼接接头的坚固性。
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