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Design of three-primary-color filter based on structure of three-cavity Fabry-Perot color filter

机译:基于三腔法布里 - 珀罗滤色器结构的三原色滤光片设计

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摘要

In order to possess narrow passband and high transmittance at the center wavelengths of three primary colors, a three-cavity Fabry-Perot (FP) color filter is proposed whose center wavelengths are 700 nm (red), 546.1 nm (green) and 435.8 nm (blue) respectively. Through simulation, it is found that when the green color filter is in the middle, the transmission peaks only appear at the wavelength of three primary colors in the visible light range. And the structure of green color filter in the middle is designed as (LH)~62L(HL)~6 while the structure of red and blue color filters on both sides is (HL)~62H(LH)~6 to avoid high transmission peaks other than the center wavelengths of three primary colors caused by the 2H half-wavelength layer at the junction after combination. On this basis, the film thickness has been optimized to improve the transmittance at the wavelengths of the three primary colors and suppress the transmittance at other wavelengths. Through simulation analysis, it can be seen that the transmittance of the improved filter with optimized film thickness reach 99.64%, 96.77% and 92.94% at the wavelengths of 700.6 nm, 545.8 nm and 434.8 nm, and the full width at half maximum (FWHM) are 2.1 nm, 4.5 nm and 3.1 nm respectively. Compared with a three-primary-color filter based on grating structure, photonic crystal and metal film plasmonic, the three-cavity FP color filter proposed in this paper has not only higher transmittance at the center wavelengths of three primary color but also very narrow FWHM, which is 1-2 orders of magnitude lower than the former. Due to its superior performance, simple structure and convenient design, the filters of this structure are expected to be widely applied in display technology, color synthesis and modulation.
机译:为了在三原色的中心波长处具有窄通带和高透射率,提出了一个三腔法布里 - 珀罗(FP)滤色器,其中心波长为700nm(红色),546.1nm(绿色)和435.8nm (蓝色)分别。通过模拟,发现当绿色滤色器在中间时,传输峰值仅出现在可见光范围内的三种原色的波长。和中间的绿色滤光器的结构设计为(LH)〜62L(HL)〜6,而两侧的红色和蓝色过滤器的结构是(HL)〜62h(LH)〜6,避免高传输除了组合后的连接器处的2H半波长层引起的三种原色的中心波长以外的峰。在此基础上,已经优化了膜厚度,以改善三原色波长的透射率,并在其他波长处抑制透射率。通过仿真分析,可以看出,在700.6nm,545.8nm和434.8nm的波长下,优化的薄膜厚度的改进过滤器的透射率达到99.64%,96.77%和92.94%,并且全宽为半最大(fwhm) )分别为2.1nm,4.5nm和3.1nm。与基于光栅结构,光子晶体和金属膜等离子体的三次滤色器相比,本文提出的三腔FP滤色器不仅具有三种原色的中心波长的透射率,而且非常窄的FWHM ,这比前者低1-2个数量级。由于其卓越的性能,结构简单和方便的设计,该结构的过滤器预计将广泛应用于显示技术,颜色合成和调制。

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