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Design and Optimization of A Near-Elliptic Cladding Photonic Crystal Fiber with High Extinction Ratio Stability

机译:高消光比稳定性近椭圆包覆层光子晶体的设计与优化

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A new near-elliptic cladding Polarization-maintaining photonic crystal fibre (PM-PCF) with four different hole diameters was proposed. Since the refractive index decreases gradually from x-axis to y-axis, less polarization coupling and high extinction ratio were obtained compared to the conventional PM-PCFs. Secondly, every hole diameter of near-elliptic cladding was optimized to get good performance, considering proper mode field diameter of x-axis and y-axis for better coupling to SLD and smaller confinement loss of the new PCF, high birefringence and high extinction ratio, especially the effects of disturbance on extinction ratio stability. According to series of comparison on different hole diameters and correlation between different holes, the optimum parameters of this new PCF of Λ=2.2 μm, d_1=2μm, d_2=1.1μm, d_3=1.7μm and d_4 =1.2μm were derived. The optimized near-elliptic cladding PCF can obtain both high extinction ratio (>29dB) and good extinction ratio stability (< 2dB with ±10% transverse disturbance of d_3) which is useful for practical use.
机译:提出了一种具有四个不同孔直径的新的近乎椭圆形包层偏振 - 保持光子晶纤维(PM-PCF)。由于折射率从X轴逐渐降低到y轴,因此与传统的PM-PCF相比,获得了较少的偏振耦合和高消光比。其次,优化了近椭圆形包层的每个孔直径,以获得良好的性能,考虑到X轴和Y轴的适当模式直径,以便更好地耦合到新的PCF,高双折射和高消光比的更好的耦合。 ,特别是干扰对消光比稳定性的影响。根据不同孔直径的串联比较和不同孔之间的相关性,推导出该新的PCF的最佳参数,D_1 =2μm,d_2 =1.1μm,d_3 =1.7μm和d_4 =1.2μm。优化的近椭圆形包层PCF可以获得高消光比(> 29dB)和良好的消光比稳定性(<2dB,D_3的横向干扰±10%),这对于实际使用是有用的。

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