研究目的
To fabricate compact monolithic MDM-based color filter arrays with high transmission efficiency and narrow linewidth across the whole visible light region using a template-confined thermal reflow approach.
研究成果
The proposed template-confined thermal reflow method successfully fabricated monolithic CFA with high transmission efficiency, narrow spectral linewidth, and excellent color tunability across the visible light region. This method offers a promising alternative to conventional fabrication techniques for CFA applications.
研究不足
The fabrication process requires precise control of the thermal reflow conditions and the filling density of PMMA nanogratings. The method may face challenges in scaling up for industrial production without further optimization.
1:Experimental Design and Method Selection:
A template-confined thermal reflow approach was used to fabricate monolithic CFA based on Ag-PMMA-Ag sandwich configuration.
2:Sample Selection and Data Sources:
Quartz substrate was used as the bottom metal layer with PMMA nanogratings of different linewidths.
3:List of Experimental Equipment and Materials:
E-beam evaporation system, EBL system (Raith-150TWO), AFM (Bruker, Dimension Icon), FESEM (Carl-Zeiss Sigma HD).
4:Experimental Procedures and Operational Workflow:
PMMA nanogratings were fabricated by EBL, followed by a thermal reflow process to achieve stepwise dielectric films.
5:Data Analysis Methods:
Transmission spectra were measured using a micro-area transmission spectrometer, and simulations were performed using FDTD software.
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