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MHz isolated XUV attosecond pulses generation using plasmonic enhancement in asymmetric metallic nanoantenna

机译:MHz孤立的XUV AttoSecondond脉冲在不对称金属纳米纳米氏菌中的增强生成

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We theoretically investigate utilizing the enhanced plasmonic fields in metallic nanostructures. Numerical techniques are employed to optimize nanoantennas to attain the enhanced plasmonic fields up to 270. In the volume of 15 × 15 × 30 nm~3 in nanoantenna, the intensity could be enhanced to 10~(14) W/cm~2 for high harmonic generation (HHG). Optimal conditions for the production of MHz isolated attosecond pulse of 140 attosecond via HHG have been identified. These findings open up the possibility for the development of a compact source of ultrashort XUV pulses with MHz repetition rates, our simulations indicate a potential route towards the temporal shaping of the plasmonic near-field and in turn the generation of single attosecond pulses. Such XUV sources, which may operate at MHz repetition rate, could find applications in high-precision spectroscopy and for spatio-time-resolved measurements of collective electron dynamics on nanostructured surfaces. Moreover, the asymmetric cross nanoantennas is proposed to control the polarizations and select the wavelengths via varying the ratio of nanoantennas and generate the XUV pulse in both polarized direction.
机译:理论上,利用金属纳米结构中的增强等离子体领域来研究。使用数值技术来优化纳米宁纳米,以获得高达270的增强型等离子体场。在纳米尼的体积为15×15×30nm〜3中,高度可以增强至10〜(14)W / cm〜2的强度谐波产生(HHG)。已经确定了通过HHG产生140 AttoSecond的MHz隔离脉冲的最佳条件。这些发现开辟了开发具有MHz重复速率的紧凑型超短XUV脉冲源的可能性,我们的模拟表明朝向等离离子体近场的时间成型的潜在路线,并反过来产生单一的阳离子脉冲。这种可以在MHz重复率下运行的这种XUV源可以在高精度光谱学中找到应用以及纳米结构表面上的集体电子动力学的时空测量。此外,提出了不对称的交叉纳米纳米来控制偏振并通过改变纳米环的比率选择波长,并在两个偏振方向上产生XUV脉冲。

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