Optical properties of As2S3-based suspended-core photonic crystal fiber

D. Hoang, Nam Hai Tran, Thi Thuy Nhung Nguyen
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Abstract

In this paper, the nonlinear properties of photonic crystal fibers (PCF) with As2S3 substrate were analyzed numerically. With the suspended-core design, we achieve an anomalous dispersion regime with one or two zero-dispersion wavelengths, which is flat and has a small value at the investigated wavelength. The high nonlinear coefficient and very low confinement loss in the wavelength range of 1–3 µm, in comparison with other publications, are the outstanding advantages of these suspended-core PCFs. The highest nonlinear coefficient (28,527.374 W–1·km–1), smallest effective mode area (0.593 µm2), and low confinement loss (6.050 × 10–17 dB·m–1) at the wavelength of 1.55 µm were observed in the PCFs with a fiber diameter of 16.07 μm. Based on the numerical simulation results, we proposed two optimal structures suitable for supercontinuum generation.
基于as2s3的悬芯光子晶体光纤的光学特性
本文对As2S3衬底光子晶体光纤的非线性特性进行了数值分析。通过悬芯设计,我们获得了一个具有一个或两个零色散波长的异常色散区,该色散区在所研究的波长处平坦且具有小值。在1-3µm波长范围内,与其他出版物相比,高非线性系数和极低约束损耗是这些悬浮核心PCFs的突出优点。光纤直径为16.07 μm的PCFs在1.55 μm波长处的非线性系数最高(28,527.374 W-1·km-1),有效模面积最小(0.593µm2),约束损耗低(6.050 × 10-17 dB·m - 1)。根据数值模拟结果,提出了两种适合超连续谱生成的最优结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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