Qin Zhaofu, Chen Hao, Hu Taozheng, Zhang Menglai, Chen Zhuo, Wang Zhenlin
Opt Express. 2021 May 10;29(10):15269-15278. doi: 10.1364/OE.424412.
We experimentally and theoretically investigate the influence of alumina coating on the second-harmonic generation (SHG) from split-ring resonator shaped air apertures engraved in a gold film, which are also termed as complementary split-ring resonators (CSRRs). By coating the CSRR arrays with alumina film of certain thickness, we precisely tune their electric diploe resonances (EDRs) to overlap the fundamental wavelength (FW) and realize the EDR enhanced SHG process. On this basis, by shortening the arm length of the CSRRs and then coating them with a certain thickness of the alumina film, we have achieved an SHG enhancement of nearly 1.2-fold in experiment and 8-fold in simulation compared to the CSRR array with an unshortened arm length. We attributed it to the improvement of the magnitude of the effective nonlinear source due to the realization of a doubly-resonant condition. As a flexible method, dielectric coating not only is beneficial to precisely and dynamically optimize the linear and nonlinear properties of the as-fabricated nanoscale devices but also can play the role of a protective layer, which can partially improve the damage threshold of these plasmonic nanoscale devices.
我们通过实验和理论研究了氧化铝涂层对刻在金膜上的开口环谐振器形空气孔(也称为互补开口环谐振器,CSRRs)二次谐波产生(SHG)的影响。通过用一定厚度的氧化铝膜涂覆CSRR阵列,我们精确调整其电偶极共振(EDRs)使其与基波波长(FW)重叠,并实现了EDR增强的SHG过程。在此基础上,通过缩短CSRR的臂长,然后用一定厚度的氧化铝膜涂覆它们,与臂长未缩短的CSRR阵列相比,我们在实验中实现了近1.2倍的SHG增强,在模拟中实现了8倍的增强。我们将其归因于由于实现了双共振条件而导致的有效非线性源大小的改善。作为一种灵活的方法,介电涂层不仅有利于精确动态地优化所制备的纳米级器件的线性和非线性特性,而且可以起到保护层的作用,这可以部分提高这些等离子体纳米级器件的损伤阈值。