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首页> 外文期刊>Journal of optics >Symmetric Ge(2)Sb(2)Te(5)based metamaterial absorber induced dynamic wide-gamut structural color
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Symmetric Ge(2)Sb(2)Te(5)based metamaterial absorber induced dynamic wide-gamut structural color

机译:对称GE(2)SB(2)TE(5)基于超材料吸收器诱导的动态宽域结构颜色

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摘要

Plasmonic color has played a critical role for its applications in color printing and display owing to the advantages of high-resolution and durability. Recently, increasing attempts have been performed to actualize dynamic structural color. Here theoretically proposed is the generation of wide color gamut in symmetric Ge2Sb2Te5(GST) based metamaterial absorber. By introducing a periodic metallic nanodisk array on top of the composite structure, the color variation arises from GST transition between amorphous phase and crystalline phase can be enhanced significantly. Due to the interplay of the localized/propagating surface plasmons, Fabry-Perot cavity mode and Wood's anomaly with different resonant frequencies, both hue and saturation of the structural color can be tuned accordingly through adjusting the structural geometry of the nanodisks. It is demonstrated that up to 74% and 94% of the sRGB and CMY(K) space can be obtained with this phase-change metamaterial display. This finding paves the way toward the development of practical platform for color printing and display applications.
机译:由于高分辨率和耐用性的优点,等离子体颜色为其在彩色印刷和显示器中的应用发挥了关键作用。最近,已经进行了增加的尝试以实现动态结构颜色。这里理论上提出是基于对称GE2SB2TE5(GST)的超材料吸收器的宽色域的产生。通过在复合结构顶部引入周期性金属纳米盘阵列,颜色变化产生从非晶相和结晶相之间的GST转变显着提高。由于局部/传播表面等离子体的相互作用,法布里 - 珀罗腔模式和具有不同谐振频率的木材的异常,通过调节纳米透露度的结构几何形状,可以通过调节结构颜色的色调和饱和度。据证明,通过该相变超材料显示,可以获得高达74%和94%的SRGB和CMY(k)空间。这一发现探讨了彩色印刷和显示应用的实用平台的开发方式。

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