CNRS, Aix-Marseille Université , Centrale Marseille, IM2NP, UMR 7334, Campus de St. Jérôme, 13397 Marseille, France.
ACS Nano. 2014 Nov 25;8(11):11181-90. doi: 10.1021/nn505632b. Epub 2014 Nov 6.
Subwavelength-sized dielectric Mie resonators have recently emerged as a promising photonic platform, as they combine the advantages of dielectric microstructures and metallic nanoparticles supporting surface plasmon polaritons. Here, we report the capabilities of a dewetting-based process, independent of the sample size, to fabricate Si-based resonators over large scales starting from commercial silicon-on-insulator (SOI) substrates. Spontaneous dewetting is shown to allow the production of monocrystalline Mie-resonators that feature two resonant modes in the visible spectrum, as observed in confocal scattering spectroscopy. Homogeneous scattering responses and improved spatial ordering of the Si-based resonators are observed when dewetting is assisted by electron beam lithography. Finally, exploiting different thermal agglomeration regimes, we highlight the versatility of this technique, which, when assisted by focused ion beam nanopatterning, produces monocrystalline nanocrystals with ad hoc size, position, and organization in complex multimers.
亚波长尺寸的介电 Mie 谐振器最近作为一种很有前途的光子学平台出现,因为它们结合了介电微结构和支持表面等离激元的金属纳米粒子的优点。在这里,我们报告了一种去湿工艺的能力,该工艺不依赖于样品尺寸,能够从商用的绝缘体上硅(SOI)衬底开始在大范围内制造基于硅的谐振器。自发去湿被证明可以生产出具有两个在可见光谱中谐振模式的单晶 Mie 谐振器,如共焦散射光谱所观察到的。当电子束光刻辅助去湿时,观察到基于硅的谐振器具有均匀的散射响应和改善的空间有序性。最后,利用不同的热团聚状态,我们强调了该技术的多功能性,当该技术与聚焦离子束纳米光刻相结合时,可以在复杂的多聚体中以特定的尺寸、位置和组织产生单晶纳米晶体。