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Dramatic enhancement of supercontinuum generation in elliptically-polarized laser filaments

机译:椭圆偏振激光丝中超连续谱产生的显着增强

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摘要

Broadband laser sources based on supercontinuum generation in femtosecond laser filamentation have enabled applications from stand-off sensing and spectroscopy to the generation and self-compression of high-energy few-cycle pulses. Filamentation relies on the dynamic balance between self-focusing and plasma defocusing – mediated by the Kerr nonlinearity and multiphoton or tunnel ionization, respectively. The filament properties, including the supercontinuum generation, are therefore highly sensitive to the properties of both the laser source and the propagation medium. Here, we report the anomalous spectral broadening of the supercontinuum for filamentation in molecular gases, which is observed for specific elliptical polarization states of the input laser pulse. The resulting spectrum is accompanied by a modification of the supercontinuum polarization state and a lengthening of the filament plasma column. Our experimental results and accompanying simulations suggest that rotational dynamics of diatomic molecules play an essential role in filamentation-induced supercontinuum generation, which can be controlled with polarization ellipticity.
机译:飞秒激光灯丝中基于超连续谱产生的宽带激光源已使应用范围从对位感应和光谱学到高能几个周期脉冲的产生和自压缩。细丝化依赖于自聚焦和等离子体散焦之间的动态平衡-分别由Kerr非线性和多光子或隧道电离介导。因此,灯丝的特性(包括超连续谱的产生)对激光源和传播介质的特性高度敏感。在这里,我们报告了超连续谱在分子气体中细丝化的异常光谱展宽,这是在输入激光脉冲的特定椭圆偏振态下观察到的。产生的光谱伴随着超连续谱偏振态的改变和灯丝等离子体柱的延长。我们的实验结果和随附的模拟结果表明,双原子分子的旋转动力学在细丝诱导的超连续谱生成中起着至关重要的作用,可以通过极化椭圆率对其进行控制。

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