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Birefringence-induced splitting of the zero-dispersion wavelength in nonlinear photonic crystal fibers

机译:非线性光子晶体光纤中双色散引起的零色散波长的分裂

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摘要

We investigate how the strongly wavelength-dependent birefringence in nonlinear photonic crystal fibers leads to a splitting in the zero-dispersion wavelength for the two polarizations. We translate the requirements for the maximum splitting of the zero-dispersion wavelength to requirements for transverse structural uniformity by adopting a simple effective-index approach in which the birefringence is calculated in a step-index fiber with an elliptical core. We find that to reduce the splitting to less than 1 nm the birefringence should be less than 2×10~(-5), resulting in a transverse uniformity requirement of 1-3%, depending on the index step from the core to the cladding.
机译:我们研究了非线性光子晶体光纤中强烈依赖于波长的双折射如何导致两个偏振的零色散波长分裂。我们通过采用简单的有效折射率方法将零色散波长最大分裂的要求转换为横向结构均匀性的要求,其中在具有椭圆形纤芯的阶跃折射率光纤中计算双折射。我们发现,为了将裂口减小到小于1 nm,双折射应小于2×10〜(-5),导致横向均匀度要求为1-3%,具体取决于从纤芯到包层的折射率阶跃。

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