首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Soliton dynamics of megawatt ultrashort light pulses in a hollow photonic-crystal fiber: Effect of high-order dispersion and retarded nonlinearity
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Soliton dynamics of megawatt ultrashort light pulses in a hollow photonic-crystal fiber: Effect of high-order dispersion and retarded nonlinearity

机译:中空光子晶体光纤中兆瓦特超短光脉冲的孤子动力学:高阶色散和延迟非线性的影响

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摘要

The properties of megawatt optical solitons in hollow photonic-crystal fibers (PCFs) are studied. We demonstrate regimes where high-power laser pulses can be compressed to a few cycles of light field and identify the main tendencies in the soliton dynamics of ultrashort laser pulses in hollow PCFs originating from dispersion properties and limited transmission band of such waveguides. The influence of retarded nonlinearity on the soliton dynamics of high-power laser pulses in a hollow PCF is analyzed. In a multisoliton regime, retarded nonlinearity and high-order dispersion are shown to result in the formation of high-power pulses displaying no oscillations of their temporal envelope, which would be typical of standard high-order solitons.
机译:研究了中空光子晶体光纤(PCFs)中兆瓦级光学孤子的特性。我们演示了可以将高功率激光脉冲压缩到几个光场周期的机制,并确定了中空PCF中超短激光脉冲孤子动力学的主要趋势,这些趋势是由此类波导的色散特性和有限的传输带引起的。分析了延迟非线性对空心PCF中高功率激光脉冲孤子动力学的影响。在多孤子状态下,延迟的非线性和高阶色散显示为导致高功率脉冲的形成,而高功率脉冲的时间包络没有振荡,这是标准高阶孤子的典型现象。

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