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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Ultrashort spatiotemporal optical solitons in quadratic nonlinear media: Generation of line and lump solitons from few-cycle input pulses
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Ultrashort spatiotemporal optical solitons in quadratic nonlinear media: Generation of line and lump solitons from few-cycle input pulses

机译:二次非线性介质中的超短时空光学孤子:从几个周期的输入脉冲生成线孤峰孤峰

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摘要

By using a powerful reductive perturbation technique, or a multiscale analysis, a generic Kadomtsev- Petviashvili evolution equation governing the propagation of femtosecond spatiotemporal optical solitons in quadratic nonlinear media beyond the slowly varying envelope approximation is put forward. Direct numerical simulations show the formation, from adequately chosen few-cycle input pulses, of both stable line solitons (in the case of a quadratic medium with normal dispersion) and of stable lumps (for a quadratic medium with anomalous dispersion). Besides, a typical example of the decay of the perturbed unstable line soliton into stable lumps for a quadratic nonlinear medium with anomalous dispersion is also given
机译:通过使用强大的还原摄动技术或多尺度分析,提出了控制飞秒时空光学孤子在二次非线性介质中超越缓慢变化的包络近似的传播的通用Kadomtsev-Petviashvili演化方程。直接数值模拟显示的形成,从充分地选择几周期的输入脉冲,既稳定线孤子(与正常色散的二次介质的情况下)和稳定的块状物(为一个二次介质具有反常分散体)。此外,还给出了具有异常色散的二次非线性介质的扰动不稳定线孤子衰减成稳定块的典型例子。

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