首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Nonlinear rovibrational response in the propagation of long-wavelength infrared pulses and pulse trains
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Nonlinear rovibrational response in the propagation of long-wavelength infrared pulses and pulse trains

机译:长波长红外脉冲和脉冲列车传播中的非线性振动响应

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The propagation of long-wavelength pulses is affected by a multitude of near-resonant rovibrational transitions in atmospheric constituents, of which water vapor is generally the most abundant. We extract the pure nonlinear response of these transitions from a high-resolution transmission-based effective model, which is additive to the spectrally resolved linear response, and study the influence of this on the propagation of laser pulses and pulse trains. Compared to simulations with only electronic Kerr self-focusing, we find that the nonlinear rovibrational response introduces an additional modification to strongly self-focused laser pulses and stark changes to pulses that are close to the self-focusing threshold. (C) 2019 Optical Society of America
机译:长波长脉冲的传播受大气成分中近谐振振动率过渡的影响,其中水蒸气通常是最丰富的。 我们从基于高分辨率透射的有效模型提取这些转变的纯非线性响应,这是对光谱分辨的线性响应的添加剂,并研究在激光脉冲和脉冲列车的传播上的影响。 与仅具有电子KERR自对焦的模拟相比,我们发现非线性振动响应介绍了对强烈自聚焦的激光脉冲的额外修改,并且与接近自聚焦阈值的脉冲的脉冲变化。 (c)2019年光学学会

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