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High Harmonic Generation by Guided Surface Plasmon Polaritons

机译:引导表面等离子体极性恒高谐波产生

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We discuss how the intriguing phenomenon of surface plasmon resonance (SPR) can be exploited in enhancing the intensity field of the incident femtosecond laser for the purpose of high harmonic generation (HHG). We first summarize our previous attempt made with a 2-D planar nanostructure comprised of metallic bow-tie nano-antennas, which enabled us to generate up to 21st harmonics from Xenon gas using 1-nJ pulse energy with an intensity enhancement factor of ~20 dB. Then we describe another attempt currently being made by devising a 3-D nano-waveguide with the aim of improving the HHG conversion efficiency by expanding the localized volume of field enhancement by means of propagating surface plasmon polaritons (SPPs). Our finite-difference time-domain (FDTD) calculation shows that the enhanced volume can be increased significantly by optimal selection of the waveguide's geometrical parameters as verified in our preliminary experimental results.
机译:我们讨论如何利用表面等离子体共振(SPR)的有趣现象来增强入射飞秒激光器的强度场以获得高谐波产生(HHG)。我们首先总结了先前用由金属弓形纳米天线组成的二维平面纳米结构进行的尝试,使我们能够使用1-NJ脉冲能量产生高达21次谐波,使用1-NJ脉冲能量,强度增强因子为〜20 D b。然后,我们描述了通过设计三维纳米波导而通过通过传播表面等离子体极化子(SPP)来提高HHG转换效率来改善HHG转换效率的另一种尝试。我们的有限差分时间域(FDTD)计算表明,通过在我们初步实验结果中验证的波导的几何参数的最佳选择,可以显着提高增强的体积。

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