填充四氯化碳的环形光子晶体光纤的光学特性

Hoang Trong Duc, Le Tran Bao Tran, Tran Ngoc Thao, C. V. Lanh, Nguyen Thi Thuy
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引用次数: 0

摘要

在这项研究中,通过在纤芯中渗入四氯化碳和改变包层中环的气孔直径 d1 和 d2,改善了环形光子晶体光纤的色散特性和非线性特性。详细分析了色散、有效模式面积、非线性系数和低约束等量。根据研究结果,提出了两种具有最佳光学特性的光子晶体光纤,它们都有利于超连续产生。第一种光纤的Ʌ = 1.0 µm,d1/Ʌ = 0.6,在泵浦波长为 0.985 µm 时的全常色散为 -10.785 ps/nm.km。这种光纤还具有 581.795 W-1.km-1 的高非线性系数和 3.904 dB/m 的低约束损耗。如果使用第二根光纤(Ʌ = 2.0 µm,d1/Ʌ = 0.3),在 1.3 µm 的泵浦波长处具有平坦而低的反常色散,则有望在孤子影响下产生 SC 宽带。
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Optical properties of circular photonic crystal fibers filled with carbon tetrachloride
In this work, the dispersion properties and nonlinear properties of circular photonic crystal fibers were improved by a combination of carbon tetrachloride infiltration into the core and modification of the air hole diameters d1 and d2 of rings in the cladding. The quantities such as dispersion, effective mode area, nonlinear coefficient, and low confinement are analyzed in detail. Based on the survey results, two photonic crystal fibers with optimal optical properties were proposed which are beneficial for supercontinuum generation. The first fiber with Ʌ = 1.0 µm, d1/Ʌ = 0.6, has an all-normal dispersion of –10.785 ps/nm.km at a pump wavelength of 0.985 µm. The high nonlinear coefficient of 581.795 W–1.km–1 and the low confinement loss of 3.904 dB/m are also achieved with this fiber. SC broadband under the influence of soliton is expected to be generated when using the second fiber (Ʌ = 2.0 µm, d1/Ʌ = 0.3) with flat and low anomalous dispersion at the pump wavelength of 1.3 µm.
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