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The generation of MHz isolated XUV attosecond pulses by plasmonic enhancement in a tailored symmetric Ag cross nanoantenna with a few-cycle laser

机译:在量身定制的对称Ag交叉纳米天线中,通过几个周期激光的等离激元增强产生MHz隔离的XUV阿秒脉冲

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摘要

Within a few-cycle laser, the generation of MHz isolated extreme ultraviolet (XUV) attosecond pulses via nanoplasmonic field enhancement in silver nanostructures is theoretically investigated. Numerical techniques are employed to optimize nanoantennas and attain plasmonic field enhancement factors up to 270. In a volume of 15 × 15 × 30 nm~(-3) in the 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 pulses of 140 attosecond duration 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. Moreover, asymmetric cross HHG is proposed to control the polarizations, select the wavelengths by varying the ratio of silver nanoantennas and generate XUV pulses in both polarized directions.
机译:在几个周期的激光器中,理论上研究了通过银纳米结构中的纳米等离子体场增强产生MHz隔离的极端紫外(XUV)阿秒脉冲。利用数值技术优化了纳米天线,并获得了高达270的等离子体场增强因子。在纳米天线的体积为15×15×30 nm〜(-3)时,强度可以提高到10〜(14)W cm〜。 (-2)用于高次谐波产生(HHG)。已经确定了通过HHG产生140阿秒持续时间的MHz分离阿秒脉冲的最佳条件。这些发现为开发具有MHz重复频率的超短XUV脉冲的紧凑源提供了可能性。此外,提出了非对称交叉HHG来控制偏振,通过改变银纳米天线的比例来选择波长并在两个偏振方向上生成XUV脉冲。

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