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Dramatic Dwindling of the Power Spectrum of High Order Harmonics by Shrinking of the Gap Size in Bowtie Nanostructures

机译:通过弓形纳米结构间隙尺寸缩小高阶谐波功率谱的剧烈Dwindling

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摘要

Our work is based on high harmonic generation in a gaseous medium (helium ion), by exploiting gold bowtie nanostructures as laser field amplifiers. As the result of emission of a laser pulse, the wave function of the atom varies with time; so, it is necessary to solve 1D time-dependent Schrodinger equation by means of split operator method. By illumination of a short duration, long wavelength three color laser pulse inside the gap, the enhanced field not only changes with time, but also varies in space. In this work we considered this space inhomogeneity in linear and nonlinear schemes. We show that in nonlinear case, the plateau region is more extended. We also show that in larger gaps, cutoff occurs on higher frequencies. But limitation of electron motion in bowtie nanostructures leads to the choice of an optimum 16 nm gap size in our case. We predict that, by the superposition of supercontinuum harmonics, a 26 attosecond pulse can be generated.
机译:我们的作品基于气态介质(氦离子)的高谐波产生,通过作为激光场放大器利用金蝴蝶结纳米结构。 由于激光脉冲发射的结果,原子的波浪功能随时间而变化; 因此,有必要通过分离操作员方法求解1D时间依赖的Schrodinger方程。 通过照明短持续时间,长波长三色激光脉冲在间隙内,增强型领域不仅随时间变化,而且在空间内也变化。 在这项工作中,我们认为这种空间在线性和非线性方案中的不均匀性。 我们表明,在非线性情况下,高原地区更加延长。 我们还表明,在较大的间隙中,截止频率越高。 但是,蝴蝶结纳米结构中电子运动的限制导致我们的情况下选择最佳16nm间隙尺寸。 我们预测,通过超连续谐波的叠加,可以产生26个阳极脉冲。

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