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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Tuning near-field enhancements on an off-resonance nanorod dimer via temporally shaped femtosecond laser
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Tuning near-field enhancements on an off-resonance nanorod dimer via temporally shaped femtosecond laser

机译:通过时间形状的飞秒激光在失谐纳米棒二聚体上调谐近场增强

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摘要

We theoretically investigated ultrafast thermal dynamics tuning of near-field enhancements on an off-resonance gold nanorod dimer via temporally shaped femtosecond (fs) laser double pulses. The nonequilibrium thermal excitation is self-consistently coupled into a near-field scattering model for exploring the ultrafast near-field enhancement effects. It is revealed that the near electric-field localized within the gold nanorod dimer can be largely promoted via optimizing the temporal separation and the pulse energy ratio of temporally shaped femtosecond laser double pulses. The results are explained as thermal dynamics manipulation of plasmon resonances in the nanorod dimer via tailoring temporally shaped femtosecond laser. This study provides basic understanding for tuning near-field properties on poorly fabricated metallic nano-structures via temporally shaped femtosecond laser, which can find potential applications in the fields such as fs super-resolution near-field imaging, near-field optical tweezers, and fs photothermal therapy.
机译:我们从理论上研究了非共振金纳米棒二聚体通过时间形状的飞秒(fs)激光双脉冲对近场增强的超快速热动力学调谐。将非平衡热激发自洽地耦合到近场散射模型中,以探索超快的近场增强效应。揭示了通过优化时间形状的飞秒激光双脉冲的时间间隔和脉冲能量比,可以大大促进金纳米棒二聚体中局部的近电场。结果被解释为通过定制时间形状的飞秒激光对纳米棒二聚体中的等离激元共振进行热动力学操纵。这项研究为通过时间形状的飞秒激光调整不良制造的金属纳米结构的近场特性提供了基本的了解,可以在诸如超分辨近场成像,近场光镊和超短波成像等领域中找到潜在的应用。 fs光热疗法。

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