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首页> 外文期刊>Applied optics >Low-splicing-loss polarization-maintaining photonic-crystal-fiber-based Sagnac interferometer and its cladding-mode effect
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Low-splicing-loss polarization-maintaining photonic-crystal-fiber-based Sagnac interferometer and its cladding-mode effect

机译:基于低裂口损耗的偏振光子晶体光纤Sagnac干涉仪及其包层效应

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摘要

A low-splicing-loss polarization-maintaining photonic-crystal-fiber (PMPCF)-based optical fiber Sagnac interferometer (OFSI) and its cladding-mode effect are demonstrated experimentally and analytically. An OFSI with minimum splicing loss of about 2.6 dB is achieved. The weak cladding modes induced by residual mode field diameter mismatch at the fusion splice cause a filtering effect on the transmission spectra of the OFSIs. This is especially noticeable for short length PMPCF-based OFSIs. Experimental results show that the relatively maximum ripple fluctuation induced by the cladding mode can reach 5.7percent. The cladding-mode effect can be eliminated by slightly bending the PMPCF, but this introduces additional insertion loss.
机译:通过实验和分析证明了一种低损耗损耗偏振光子晶体光纤(PMPCF)基光纤Sagnac干涉仪(OFSI)及其包层效应。实现了最小拼接损耗约为2.6 dB的OFSI。熔接处残余模场直径不匹配引起的弱包层模对OFSI的透射光谱产生滤波作用。这对于基于PMPMF的短长度OFSI尤为明显。实验结果表明,包层模式引起的相对最大纹波波动可达5.7%。可以通过稍微弯曲PMPCF消除包层效应,但这会带来额外的插入损耗。

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