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Spectral resonant properties of reflected light for metal dielectric subwavelength gratings in visible regions

机译:金属电介质亚波长光栅在可见光区域反射光的光谱共振特性

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摘要

A metal-dielectric grating consists of alternating metal and dielectric materials with period less than single wavelength of visible radiations. Optical behaviors of reflection spectra of this grating for s-polarized and p-polarized incident white light are studied systematically. For reflected light, it is the p-polarized light rather than s-polarization shows unusual optical behaviors with characteristics of single-peak spectra, higher peak efficiencies of higher than 75% and lower off-resonant efficiencies. The spectral width of p-polarized light with desirable frequency-selective functions is much wider. There exist two resonant areas for p-polarizations extending toward each other as filling factors increase, and positions of the resonances are mainly determined by grating periods existing linear relationships between them. For making positions of resonances occur in visible wavelengths, filling factors and grating periods should be respectively designed between 0.5 and 0.6 and between 0.25 and 0:45 μm. The newly observed properties of p-polarized lights can be used to exploit novel devices for reflection applications in the fields of optical securities and color filters.
机译:金属介电光栅由周期时间小于可见辐射单波长的交替金属和介电材料组成。系统研究了该光栅对s偏振和p偏振入射白光的反射光谱的光学行为。对于反射光,它是p偏振光而不是s偏振,显示出不寻常的光学行为,具有单峰光谱的特性,高于75%的较高峰值效率和较低的非共振效率。具有理想的频率选择功能的p偏振光的光谱宽度要宽得多。随着填充因子的增加,存在两个用于p极化的共振区域,它们彼此相对延伸,并且共振的位置主要由它们之间存在线性关系的光栅周期确定。为了使共振位置发生在可见波长下,填充系数和光栅周期应分别设计在0.5至0.6μm和0.25至0:45μm之间。新近观察到的p偏振光特性可用于开发新颖的设备,用于光学证券和滤色镜领域中的反射应用。

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