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Designing microstructured polymer optical fibers for cascaded quadratic soliton compression of femtosecond pulses

机译:设计微结构聚合物光纤用于飞秒脉冲的级联二次孤子压缩

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摘要

The dispersion of index-guiding microstructured polymer optical fibers is calculated for second-harmonic generation. The quadratic nonlinearity is assumed to come from poling of the polymer, which in this study is chosen to be the cyclic olefin copolymer Topas. We found a very large phase mismatch between the pump and the second-harmonic waves. Therefore the potential for cascaded quadratic second-harmonic generation is investigated in particular for soliton compression of fs pulses. We found that excitation of temporal solitons from cascaded quadratic nonlinearities requires an effective quadratic nonlinearity of 5 pm/V or more. This might be reduced if a polymer with a low Kerr nonlinear refractive index is used. We also found that the group-velocity mismatch could be minimized if the design parameters of the microstructured fiber are chosen so the relative hole size is large and the hole pitch is on the order of the pump wavelength. Almost all design-parameter combinations resulted in cascaded effects in the stationary regime, where efficient and clean soliton compression can be found. We therefore did not see any benefit from choosing a fiber design where the group-velocity mismatch was minimized. Instead numerical simulations showed excellent compression of $lambda=800$ nm 120 fs pulses with nJ pulse energy to few-cycle duration using a standard endlessly single-mode design with a relative hole size of 0.4.
机译:计算出用于第二谐波产生的折射率导向的微结构聚合物光纤的色散。假定二次非线性是由于聚合物的极化而引起的,在本研究中,该聚合物被选择为环状烯烃共聚物托帕斯。我们发现泵和二次谐波之间存在很大的相位失配。因此,特别是对于fs脉冲的孤子压缩,研究了级联二次谐波产生的可能性。我们发现,从级联二次非线性激发时间孤子需要5 pm / V或更高的有效二次非线性。如果使用低Kerr非线性折射率的聚合物,则可以减少这种情况。我们还发现,如果选择微结构化纤维的设计参数,从而使相对孔尺寸大且孔间距在泵浦波长的数量级,则可以将群速度失配降至最低。几乎所有设计参数组合都会在平稳状态下产生级联效应,在该状态下可以找到有效且干净的孤子压缩。因此,我们看不到选择将群速度失配最小化的光纤设计的任何好处。取而代之的是,数值模拟显示使用标准的环形相对孔径为0.4的无休止单模设计将具有nJ脉冲能量的120 fs脉冲出色地压缩到λ= 800 nm nm至几个周期。

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    Bache Morten;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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