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Design of low dispersion and low loss photonic crystal fiber: Defected core circular-octagon hybrid lattices

机译:低色散,低损耗的光子晶体光纤的设计:变形的芯圆八边形混合晶格

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Photonic crystal fibers consisting of a novel hybrid structure providing low values for both dispersion and confinement loss were simulated using finite element method. The studies on different arrangements, polygonal and circular, of air holes as cladding of PCFs have shown that circular PCFs results in a structure with low dispersion, air filling fractions remaining same. Circular PCF with dispersion 103.50 psm.km and confinement loss 5.97 x 10(-6) dB/m was restructured by replacing its first ring with octagonal air hole lattice having eight air holes. This hybrid circular-octagon PCF has shown a dispersion of 33.15 psm.km and a confinement loss of 2.52 x 10(-6) dB/m. The introduction of air hole defects in the hybrid fiber core with three identical air holes in an equilateral triangular lattice was found to modify dispersion by reducing its value to -11.63 psm.km with confinement loss 9.51 x 10(-5) dB/m.
机译:使用有限元法模拟了由新颖的混合结构组成的光子晶体光纤,该结构提供了较低的色散和限制损耗值。对作为PCF覆层的气孔的不同排列方式(多边形和圆形)的研究表明,圆形PCF导致结构的分散性低,空气填充率保持不变。通过用具有八个气孔的八边形气孔格子代替其第一环,重新构造了色散为103.50 ps / nm.km和限制损耗为5.97 x 10(-6)dB / m的圆形PCF。这种混合的圆形八边形PCF的色散为33.15 ps / nm.km,限制损耗为2.52 x 10(-6)dB / m。发现在等边三角形晶格中具有三个相同气孔的混合纤维纤芯中引入气孔缺陷可以通过将色散值降低至-11.63 ps / nm.km并限制损耗9.51 x 10(-5)dB /来改变色散。米

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