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Angular sensitivity for a Fabry-Perot structure incorporating different dielectric materials

机译:具有不同介电材料的法布里 - 珀罗结构的角度敏感性

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Color filters based on different Fabry-Perot structures are investigated extensively, and incident angle dependency is an important characteristic in practical applications. Here, we investigated a color filter incorporating a Fabry-Perot structure, discussing its reflective angular sensitivity related to refractive index of its dielectric material. By finite difference time domain(FDTD) theory, the refractive index of the dielectric material is found to influence the angular sensitivity greatly while the optical thickness keeps constant. The simulated results shows that the higher the dielectric layer's refractive index is, the more angular insensitive of the reflection will be obtained and a good angular insensitive will achieved when the refractive index is larger than 2.1. Finally, samples with different dielectric layer are fabricated in experiment and the measured results verify influence of the refractive index of dielectric layer on the spectra angular sensitivity, which is helpful for the application of color filter in color display, image sensors and decoration.
机译:广泛地研究了基于不同的法布里 - 珀罗结构的滤色器,并且入射角依赖性是实际应用中的重要特征。这里,我们研究了包含法布里 - 珀罗结构的滤色器,讨论其与其介电材料的折射率相关的反射角灵敏度。通过有限差分时域(FDTD)理论,发现介电材料的折射率极大地影响角度灵敏度,而光学厚度保持恒定。模拟结果表明,介电层的折射率越高,将获得反射的越大的角度不敏感,并且当折射率大于2.1时,将实现良好的角度不敏感。最后,在实验中制造具有不同介电层的样品,并测量结果验证介电层折射率对光谱角度敏感性的影响,这有助于在彩色显示器,图像传感器和装饰中应用滤色器。

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