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首页> 外文期刊>Journal of Modern Optics >Dispersion-compensating photonic crystal fiber with wavelength tunability based on a modified dual concentric core structure
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Dispersion-compensating photonic crystal fiber with wavelength tunability based on a modified dual concentric core structure

机译:基于改进的双同心芯结构的波长可调性分散补偿光子晶体光纤

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摘要

We present a 5-layer air-hole dispersion-compensating photonic crystal fiber (PCF) with a modified dual concentric core structure, based on central rod doping. The finite element method (FEM) was used to investigate the structure numerically. If the structural parameters remain unchanged, a high degree of linear correlation between the central rod refractive index and the operating wavelength can be achieved in the wavelength range of 1.5457-1.5857 m, which suggests that the operating wavelength can be determined by the refractive index of the centre rod. A negative dispersion coefficient between -5765.2 ps/km/nm and -6115.8 ps/km/nm was obtained by calculation and within the bandwidth of 108 nm (1.515-1.623 m) around 1.55 m, a dispersion coefficient of -3000 ps/km/nm can be ensured for compensation. In addition, this proposed PCF also has the advantage of low confinement loss, between 0.00011 and 0.00012 dB/m, and ease of fabrication with existing technology. The proposed PCF has good prospects in dispersion-compensating applications.
机译:我们基于中央杆掺杂,具有改进的双同心芯结构的5层气孔分散补偿光子晶纤维(PCF)。有限元方法(FEM)用于数值探讨该结构。如果结构参数保持不变,则中央杆折射率与工作波长之间的高度线性相关性可以在1.5457-1.5857 m的波长范围内实现,这表明操作波长可以通过折射率确定中心杆。通过计算和在108nm(1.515-1.623m)的带宽约为1.55μm,分散系数为-3000ps / km的带宽而获得 - 5765.2 ps / km / km / km / km / km / nm之间的负分散系数。-3000ps / km的分散系数/ nm可以确保补偿。此外,该提出的PCF还具有低限制损失的优势,在0.00011和0.00012dB / m之间,以及现有技术的易于制造。所提出的PCF在分散补偿应用中具有良好的前景。

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