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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A new design for non-zero dispersion-shifted fiber (NZ-DSF) with a large effective area over 100 μm~(2) and low bending and splice loss
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A new design for non-zero dispersion-shifted fiber (NZ-DSF) with a large effective area over 100 μm~(2) and low bending and splice loss

机译:一种新的非零色散位移光纤(NZ-DSF)的新设计,其有效面积超过100μm〜(2),弯曲和熔接损耗低

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摘要

A new design for large-effective-area non-zero dispersion-shifted fiber (NZ-DSF) for dense wavelength division multiplexing (DWDM) is presented. The Gaussian approximation method is used for calculating electrical field distribution for the designed refractive index profile. The designed fiber has a dispersion about 4 psm/km and dispersion slope about 0.06 psm~(2)/km at 1.55 μm operating wavelength, which can be used to avoid four-wave mixing (FWM). In addition, our calculation also shown that the designed fiber not only has a large effective area over 100 μm~(2) but also has low bending loss (<1.3×10~(-3) dB with 30 mm bending radius and 100 turns) and low splice loss (<6.38×10~(-3) dB) with conventional fiber. The manufacturing tolerance of the fiber is found to be compatible with other types of known profile large-effective-area fibers. Thus, this newly designed fiber may be a good candidate for the long-haul DWDM fiber optic communications.
机译:提出了一种用于密集波分复用(DWDM)的大有效面积非零色散位移光纤(NZ-DSF)的新设计。高斯近似方法用于计算设计的折射率分布的电场分布。设计的光纤在1.55μm的工作波长下具有约4 ps / nm / km的色散和约0.06 ps / nm〜(2)/ km的色散斜率,可用于避免四波混频(FWM)。此外,我们的计算还表明,所设计的光纤不仅有效面积超过100μm〜(2),而且弯曲损耗低(<1.3×10〜(-3)dB,弯曲半径为30 mm,匝数为100匝)和传统光纤的低熔接损耗(<6.38×10〜(-3)dB)。发现该纤维的制造公差与其他类型的已知轮廓大有效面积纤维兼容。因此,这种新设计的光纤可能是长距离DWDM光纤通信的理想选择。

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