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High-harmonic and single attosecond pulse generation using plasmonic field enhancement in ordered arrays of gold nanoparticles with chirped laser pulses

机译:使用激光脉冲在金纳米粒子的有序阵列中使用等离激元场增强来产生高谐波和单阿秒脉冲

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摘要

Coherent 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. We theoretically investigate utilizing the enhanced plasmonic fields in an ordered array of gold nanoparticles for the generation of high-harmonic, extreme-ultraviolet (XUV) radiation. By optimization of the chirp of ultrashort laser pulses incident on the array, our simulations indicate a potential route towards the temporal shaping of the plasmonic near-field and, in turn, the generation of single attosecond pulses. The inherent effects of inhomogeneity of the local fields on the high-harmonic generation are analyzed and discussed. While taking the inhomogeneity into account does not affect the optimal chirp for the generation of a single attosecond pulse, the cut-off energy of the high-harmonic spectrum is enhanced by about a factor of two.
机译:相干的XUV源可能以MHz的重复频率运行,可以在高精度光谱学中以及在时空分辨的纳米结构表面集体电子动力学测量中找到应用。我们在理论上研究了利用金纳米颗粒有序阵列中增强的等离子体场来产生高谐波,极紫外(XUV)辐射。通过优化入射在阵列上的超短激光脉冲的线性调频,我们的仿真结果表明,可能有可能向等离子体近场的时间整形,进而产生单个阿秒脉冲。分析和讨论了局部场的不均匀性对高谐波产生的内在影响。尽管考虑到不均匀性不会影响单个阿秒脉冲的产生的最佳chi,但高谐波频谱的截止能量却提高了大约两倍。

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