研究目的
To analyze the use of bowtie nanoantenna arrays for enhancement of optical field in channels of MOEMS devices using FEM simulation and consider the influence of bowtie tip pair shape on near field enhancement.
研究成果
The study obtained high localizations of the optical fields in the bowtie gaps leading to increased field concentration in the channel positioned directly above the gaps with solid robustness to tip shape change due to the channel positioning. The applied approach could be used for instance in microfluidics, to concentrate electromagnetic fields in the dielectric channel for the use in e.g. photocatalytic microreactors. Further applications include ultrasensitive chemical sensing, as well as a combination between photocatalytic microfluidics and in situ sensing in novel generation photochemical and photocatalytic reactors.
研究不足
The study is limited to the analysis of bowtie nanoantenna arrays and their influence on near field enhancement. The practical applications are yet to be fully explored.