Dispersion and polarization properties in photonic crystal fibers

P. Andrés, A. Ferrando, E. Silvestre, J. Miret, M. Andrés
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引用次数: 8

Abstract

Systematic knowledge of the particular guiding properties of photonic crystal fibers (PCF's) permits the achievement of structures with flattened, or even ultraflattened, positive, negative, or nearly-zero group velocity dispersion for different wavelength ranges. On the other hand, we have identify a PCF, called super-square PCF, in which the introduction of an off-lattice hole generates a highly anisotropic intraband guidance, and then the structure operates as a polarization maintaining fiber. Moreover, the combination of this anisotropy and intraband guidance gives rise to a radically new mechanism of polarization discrimination, which leads to a new class of single-polarization single-mode fibers. In both cases the goal is to control the dispersion and polarization properties in PCFs by modifying solely the geometrical parameters of these fibers. Keywords: fiber design, flattened dispersion.
光子晶体光纤中的色散和偏振特性
系统地了解光子晶体光纤(PCF’s)的特殊引导特性,可以实现在不同波长范围内具有平坦、甚至超平坦、正、负或接近零群速度色散的结构。另一方面,我们已经确定了一种PCF,称为超平方PCF,其中引入了一个非晶格孔,产生了高度各向异性的带内引导,然后该结构作为保偏振光纤工作。此外,这种各向异性和带内制导的结合产生了一种全新的偏振分辨机制,从而导致了一类新的单偏振单模光纤。在这两种情况下,目标是通过修改这些纤维的几何参数来控制PCFs中的色散和偏振特性。关键词:纤维设计;均匀分散;
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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