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Three-octave-spanning supercontinuum generation and sub-two-cycle self-compression of mid-infrared filaments in dielectrics

机译:三倍频程超连续谱的生成和介电体中红外灯丝的亚两周期自压缩

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摘要

We experimentally and numerically investigate the spectral and temporal structure of mid-infrared (mid-IR) filaments in bulk dielectrics with normal and anomalous group velocity dispersion (GVD) pumped by a 2.1 μm optical parametric chirped-pulse amplifier (OPCPA). The formation of stable and robust filaments with several microjoules of pulse energy is observed. We demonstrate a supercontinuum that spans more than three octaves from ZnS in the normal GVD regime and self-compression of the mid-IR pulse to sub-two-cycle duration in CaF2 in the anomalous GVD regime. The experimental observations quantitatively agree well with the numerical simulations based on a three-dimensional nonlinear wave equation that reveals the detailed spatio-temporal dynamics of mid-IR filaments in dielectrics.
机译:我们在实验和数值上研究了由2.1μm光学参量chi脉冲放大器(OPCPA)泵浦的具有正常和异常群速度色散(GVD)的体电介质中的中红外(mid-IR)灯丝的光谱和时间结构。观察到具有几个微焦耳脉冲能量的稳定而坚固的长丝的形成。我们展示了一个超连续谱,在正常GVD方案中跨距ZnS的三个八度以上,在异常GVD方案中,CaF2的中红外脉冲自压缩至亚两个周期的持续时间。实验观察结果在定量上与基于三维非线性波动方程的数值模拟非常吻合,该方程揭示了电介质中中红外灯丝的详细时空动力学。

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