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Design and optimization of highly nonlinear low-dispersion crystal fiber with high birefringence for four-wave mixing

机译:高双折射高非线性低色散四波混频光纤的设计与优化

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摘要

We have proposed a novel type of photonic crystal fiber (PCF) with low dispersion and high nonlinearity for four-wave mixing. This type of fiber is composed of a solid silica core and a cladding with a squeezed hexagonal lattice elliptical airhole along the fiber length. Its dispersion and nonlinearity coefficient are investigated simultaneously by using the full vectorial finite element method. Numerical results show that the proposed highly nonlinear low-dispersion fiber has a total dispersion as low as +-2.5 ps nm~(-1) km~(-1) over an ultrabroad wavelength range from 1.43 to 1.8 (mu)m, and the corresponding nonlinearity coefficient and birefringence are about 150 W~(-1) km~(-1) and 2.5 X 10~(-3) at 1.55 (mu)m, respectively. The proposed PCF with low ultraflattened dispersion, high nonlinearity, and high birefringence can have important application in four-wave mixing.
机译:我们提出了一种新型的低色散和高非线性的光子晶体光纤(PCF),用于四波混频。这种类型的光纤由一个实心的二氧化硅芯和一个沿光纤长度方向有一个挤压的六边形格子椭圆形气孔的包层组成。使用全矢量有限元方法同时研究了其色散和非线性系数。数值结果表明,所提出的高度非线性的低色散光纤在1.43至1.8μm的超宽波长范围内总色散低至+ -2.5 ps nm〜(-1)km〜(-1),并且相应的非线性系数和双折射在1.55μm时分别约为150 W〜(-1)km·(-1)和2.5 X 10〜(-3)。拟议的具有低超展平色散,高非线性和高双折射的PCF在四波混频中具有重要的应用。

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