Signoretto M, Suárez I, Chirvony V S, Abargues R, Rodríguez-Cantó P J, Martínez-Pastor J
UMDO (Unidad Asociada al CSIC-IMM), Instituto de Ciencia de Materiales, Universidad de Valencia, PO Box 22085, 46007 Valencia, Spain.
Nanotechnology. 2015 Nov 27;26(47):475201. doi: 10.1088/0957-4484/26/47/475201. Epub 2015 Nov 3.
In this work Au nanoparticles (AuNPs) are incorporated into poly(methyl methacrylate) (PMMA) waveguides to develop optical couplers that are compatible with planar organic polymer photonics. A method for growing AuNPs (of 10 to 100 nm in size) inside the commercially available Novolak resist is proposed with the intention of tuning the plasmon resonance and the absorption/scattering efficiencies inside the patterned structures. The refractive index of the MNP-Novolak nanocomposite (MNPs: noble metal nanoparticles) is carefully analysed both experimentally and numerically in order to find the appropriate fabrication conditions (filling factor and growth time) to optimize the scattering cross section at a desired wavelength. Then the nanocomposite is patterned inside a PMMA waveguide to exploit its scattering properties to couple and guide a normal incident laser light beam along the polymer. In this way, light coupling is experimentally demonstrated in a broad wavelength range (404-780 nm). Due to the elliptical shape of the MNPs the nanocomposite demonstrates a birefringence, which enhances the coupling to the TE mode up to efficiencies of around 1%.
在这项工作中,金纳米颗粒(AuNPs)被掺入聚甲基丙烯酸甲酯(PMMA)波导中,以开发与平面有机聚合物光子学兼容的光耦合器。提出了一种在市售酚醛清漆抗蚀剂内部生长尺寸为10至100纳米的AuNPs的方法,目的是调节图案化结构内部的等离子体共振以及吸收/散射效率。为了找到合适的制造条件(填充因子和生长时间)以在所需波长下优化散射截面,对MNP - 酚醛清漆纳米复合材料(MNPs:贵金属纳米颗粒)的折射率进行了实验和数值分析。然后,在PMMA波导内部对纳米复合材料进行图案化,以利用其散射特性沿着聚合物耦合和引导正常入射的激光束。通过这种方式,在宽波长范围(404 - 780纳米)内通过实验证明了光耦合。由于MNPs的椭圆形,纳米复合材料表现出双折射,这将与TE模式的耦合增强至约1%的效率。