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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Theory of plasmon-enhanced high-order harmonic generation in the vicinity of metal nanostructures in noble gases
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Theory of plasmon-enhanced high-order harmonic generation in the vicinity of metal nanostructures in noble gases

机译:稀有气体中金属纳米结构附近的等离激元增强高阶谐波产生理论

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摘要

We present a semiclassical model for plasmon-enhanced high-order harmonic generation (HHG) in the vicinity of metal nanostructures. We show that, besides the field enhancement, both the inhomogeneity of the enhanced local fields and electron absorption by the metal surface play an important role in the HHG process and lead to the generation of even harmonics and a significantly increased cutoff. For the examples of silver-coated nanocones and bowtie antennas, we predict that the required intensity reduces by up to three orders of magnitude due to plasmonic field enhancement. The study of the enhanced high-order harmonic generation is connected with a finite-element simulation of the electric field enhancement due to the excitation of the plasmonic modes.
机译:我们提出了在金属纳米结构附近的等离激元增强的高阶谐波产生(HHG)的半经典模型。我们显示,除了场增强以外,增强的局部场的不均匀性和金属表面的电子吸收在HHG过程中都起着重要作用,并导致产生均匀的谐波并显着增加截止值。对于镀银的纳米锥和领结天线的示例,我们预计由于等离子体场的增强,所需的强度最多降低三个数量级。增强型高次谐波产生的研究与由于等离激元模态激发而产生的电场增强的有限元模拟有关。

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