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Efficient Cherenkov emission of terahertz radiation from an ultrashort laser pulse propagating along a waveguiding structure with nonlinear core

机译:高效的Cherenkov辐射从沿着非线性芯的波导结构传播的超短激光脉冲发射

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A scheme for efficient Cherenkov emission of terahertz radiation using nonlinear optical rectification of femtosecond laser pulses propagating in a sandwich-like structure is proposed and investigated. The structure consists of a thin nonlinear core covered by prisms with low terahertz absorption. We developed a theory of terahertz generation in such structures and calculated spatial distributions of the generated terahertz field, its energy spectrum and conversion efficiency. The developed theory predicts the optical-to-terahertz conversion efficiency of up to several percent in a 1 cm long and 1 cm wide Si-LiNbO{sub}3-Si sandwich structure with a 40 μm thick nonlinear layer pumped by 5 μJ Ti:sapphire laser with pulse duration of 100 fs.
机译:提出了一种利用在夹层状结构中传播的飞秒激光脉冲的非线性光学整流的高效Cherenkov排放的方案,并研究。该结构包括由棱镜覆盖的薄非线性芯,具有低太赫兹的吸收。我们在这种结构中开发了一种太赫兹生成的理论,并计算了所产生的太赫兹场的空间分布,其能谱和转换效率。该理论将光学到太赫兹转化效率预测为1cm长,宽的三厘米×3-Si夹层结构中的光到太赫兹转换效率高达多于几个百分之几的含有40μm厚的非线性层,其中40μm厚的非线性层泵送了5μjti:蓝宝石激光,脉冲持续时间为100 fs。

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