首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Simultaneous control of the wavelength and duration of Raman-shifting solitons using topographic photonic crystal fibers
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Simultaneous control of the wavelength and duration of Raman-shifting solitons using topographic photonic crystal fibers

机译:利用地形光子晶体光纤同时控制拉曼位移孤子的波长和持续时间

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We report an original way to control simultaneously the wavelength and duration of ultrashort solitons by using topographic photonic crystal fibers. The design of these longitudinally modulated fibers is achieved by using an accurate and simple approach based on analytical and semi-analytical tools, avoiding the use of time-consuming numerical simulations. Starting from realistic initial conditions, we show that the central wavelength of the soliton at the fiber output can be adjusted over more than 200 nm with a duration ranging from 80 to 280 fs, respectively. Experimental demonstrations, performed in five different fibers, are in excellent agreement with theoretical predictions, thus validating our approach. This new family of tunable fiber sources can be of great interest for nonlinear microscopy applications. (C) 2015 Optical Society of America
机译:我们报告了一种使用地形光子晶体光纤同时控制超短孤子的波长和持续时间的原始方法。这些纵向调制光纤的设计是通过使用基于分析和半分析工具的准确而简单的方法来实现的,从而避免了使用费时的数值模拟。从实际的初始条件开始,我们表明,光纤输出处孤子的中心波长可以在200 nm以上的范围内进行调整,持续时间分别为80至280 fs。在五种不同的纤维中进行的实验演示与理论预测非常吻合,从而验证了我们的方法。这个新的可调光纤源系列对于非线性显微镜应用可能非常感兴趣。 (C)2015年美国眼镜学会

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