论文标题
在可见的和紫外线范围内的第二和第三次谐波生成的急剧增强
Dramatic enhancement of second and third harmonic generation in gold nanogratings in the visible and UV ranges
论文作者
论文摘要
尽管历史悠久,但对金属表面的非线性光学元件的研究仍然是一个积极的研究领域。例如,考虑到吸收问题的存在仍然存在显着提高可见光和紫外线范围中的谐波转换效率的可能性。尽管对于许多人来说,似乎金属并不容易实现这一目的,但它们仍然是纳米光学发展的关键材料,更普遍地是在纳米级的电磁作用。在这里,我们报告了从金纳学中对第二和第三次谐波产生的实验观测和数值模拟,该谐波表现出血浆共振,其光谱位置取决于入射角。所有事物都是平等的,从紫外线到接近IR范围的非线性光学过程的增强以戏剧性的方式表现出来:第二次谐波生成转换效率提高了三个以上的数量级以上,而第三次谐波产生转换效率则增加了近四个数量级,两者都与预测相吻合。从我们的结果中可以得出的明确推论是,我们的模型以前所未有的准确性描述了动力学,在纳米级金属的非线性光学元件的开发中仍有许多尚待揭示。
Notwithstanding its long history, the study of nonlinear optics from metal surfaces is still an active field of research. For instance, in view of the presence of absorption questions remain concerning the possibility of significantly enhancing harmonic conversion efficiencies in the visible and UV ranges. While to many it may seem that metals do not easily lend themselves to that purpose, they are nevertheless crucial materials in the development of nanophotonics, and more generally, to electromagnetism at the nanoscale. Here, we report our experimental observations and numerical simulations of second and third harmonic generation from a gold nanograting, which exhibits a plasmonic resonance whose spectral position depends on incident angle. All things being equal, the enhancement of nonlinear optical processes from the UV to the near IR range manifests itself in dramatic manner: second harmonic generation conversion efficiencies increase more than three orders of magnitude compared to a flat gold mirror, while third harmonic generation conversion efficiency increases by nearly four orders of magnitude, both in excellent agreement with predictions. The clear inferences one may draw from our results are that our model describes the dynamics with unprecedented accuracy, and that much remains to be revealed in the development of nonlinear optics of metals at the nanoscale.