Research on the characteristics properties in photonic crystal fibers infiltrated with heavy water for supercontinuum generation application

T. Dang Van, B. T. Le Tran, L. Chu van
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Abstract

In this paper, we analyzed a PCF made from fused silica glass, with a core filled with heavy water. The guiding properties of proposed fibers in terms of effective refractive index, attenuation, and dispersion of the fundamental mode were studied and optimized setups were selected and analyzed in detail. After 25 simulations, we determined two structures possessing optimal dispersion with the lattice constant (Ʌ) and the filling factor as follows: Ʌ = 1.1 µm, d/Ʌ = 0.92 for #F1 and Ʌ = 1.4 µm, d/Ʌ = 0.92 for #F2. Besides, high nonlinearity and low confinement loss are also outstanding points in our model. Thanks to these advantages, the proposed fibers have been targeted for flat and smooth broadband supercontinuum (SC) generation for near-infrared applications.
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超连续发生应用中浸润重水的光子晶体光纤特性研究
在本文中,我们分析了一种由熔融石英玻璃制成的 PCF,其纤芯填充了重水。我们研究了拟议光纤在有效折射率、衰减和基模色散方面的导向特性,并详细选择和分析了优化设置。经过 25 次模拟,我们确定了两种具有最佳色散的结构,其晶格常数(Ʌ)和填充因子如下:对于 #F1,Ʌ = 1.1 µm,d/Ʌ = 0.92;对于 #F2,Ʌ = 1.4 µm,d/Ʌ = 0.92。此外,高非线性和低约束损耗也是我们模型的突出优点。得益于这些优势,所提出的光纤已成为近红外应用中平坦、平滑的宽带超连续(SC)产生的目标。
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