研究目的
Investigating the optical fiber-tip probes decorated with gold nanoparticles for common and ultrafast SERS applications.
研究成果
We identified a configuration with only six terminal nanoparticles (Config4) which shows the advantage of the highest enhancement in the electric field amplitude and holds potential to provide the highest spatial resolution during the SERS analysis of the object of interest. The results suggest the need for further theoretical analysis and numerical optimization as well as the experimental verification of the structure with only six terminal nanoparticles (Config4). This will help us develop a deep understanding of the parametric behavior of the structure to improve its ultrashort characteristics.
研究不足
The temporal responses of the hot spots for all configurations were characterized by relatively strong pulse elongation (relative elongation was greater than or equal to 4.3%). Due to the reflection of the incident pulse and consequent interference, the temporal responses of most hot spots contained a few peaks for all configurations except for Config4. This shows that an in-depth preliminary optimization of the structure and different laser pulse shaping techniques is needed to obtain single-peak and unextended pulse responses. However, due to inaccuracies in the manufacturing of such structures (especially the size of nanoparticles and the distances between them), their use for ultrafast analysis presents certain difficulties.