Opt Lett. 2019 Mar 1;44(5):1129-1132. doi: 10.1364/OL.44.001129.
Low- and ultralow-energy tightly focused 200 fs, 515 nm donut-shaped laser pulses at 0.25 and 0.65 NA focusing were used for single-shot ablative pulse-energy scalable nanopatterning of 50 nm thick gold film and the following plasmonic excitation of dye monolayer photoluminescence (PL) in the fabricated nanostructures, respectively. The same pulses at much lower, non-ablative nanojoule energies, and the same focusing and linear, azimuthal, or radial polarizations provided efficient spectrally and symmetry-matched excitation of both localized and delocalized surface electromagnetic modes in the separate, ring-like through holes and their arrays in the film envisioned by our modeling, thus resulting in a polarization-sensitive yield of rhodamine 6G dye PL. The demonstrated consistency between the symmetries of the donut-shaped low-energy photo-exciting laser beam, its polarization state, and the donut-shaped gold nanostructures, produced by the same beam at high, ablative pulse energies, paves the way to smart, self-consistent nanofabrication and plasmonic sensing, when the structured light interacts with the consistently structured matter.
使用低能和超低能的 200fs、515nm 环形激光脉冲,聚焦数值孔径为 0.25 和 0.65,对 50nm 厚的金膜进行单次烧蚀脉冲能量可扩展纳米图案化,并对所制备的纳米结构中的单层染料分子的等离子体激元激发的光致发光(PL)进行后续激发。使用相同的脉冲,但能量低得多,非烧蚀纳焦耳级,相同的聚焦以及线偏振、角向偏振或径向偏振,分别对我们建模中设想的金膜中的分立、环形通孔及其阵列中的局域和非局域表面等离激元模式进行了高效的光谱和对称性匹配激发,从而导致罗丹明 6G 染料 PL 的偏振敏感产率。所证明的低能量光激发激光束的环形对称性、其偏振状态与由相同高能烧蚀脉冲能量产生的环形金纳米结构之间的一致性,为智能、自洽的纳米制造和等离子体传感铺平了道路,当结构化光与一致结构化物质相互作用时。