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Multiscaled polarization effects in Suneve coronata (Lepidoptera) and other insects: application to anti-counterfeiting of banknotes

机译:冠日葵和其他昆虫的多尺度极化效应:在钞票防伪中的应用

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摘要

The scales of many Lepidoptera and the elytra of quite a number of Coleoptera possess specialized micro- and nano-structures that produce special polarization effects. They are constituted by concave multilayered cavities. This leads to two different effects: interferential non-polarized coloration by reflection near normal incidence in the middle of the cavities and polarized interferential colouration at lower wavelength after double reflection near the Brewster incidence at the periphery of the cavities. The macroscopic appearance resembles the "pointillist effect" with one of the component polarized while the other one is not. The first one can be extinguished with linear polarizer so that the colour is modified. In most insects, the structure is locally symmetric; hence, no macroscopic effects can be seen. In certain species, this symmetry is partly broken, and a slight effect can be observed. In the wing dorsal surface of the fascinating neotropical butterflies genus Suneve, perpendicular structures of two different kinds in size polarize the reflected light. The larger one is constituted by the convex cover scales whose apex falls perpendicularly on the bases of the following scales, creating long polarized valley (50 μm width) transversally running across the wing. The smaller one is constituted by the ridges of the scales (2 μm apart) that polarize light in the perpendicular direction. Adapted multilayered structures can be deposited onto banknotes to create anti-counterfeiting patterns as a further development of protection and security. Different effects can be produced by the use of such structures. Changes of luminosity: A specific pattern will be constituted by two different areas: one with horizontal concave multilayered structures, and the other one with vertical structures. Under unpolarized light, the reflected spectra of these different areas are identical and no pattern appears. Under polarized light, i.e., through a linear polarizer, one or the other area is partly extinguished, according to the orientation of the polarizer, and the pattern appears. Changes in colours: a compound colour can be produced by the juxtaposition of planed and grooved surfaces. Due to the change of incidence of the incoming light, the colours of these two zones are different, but that produced by the first one is unpolarized while the second one is partly polarized and can be modified with a linear polarizer.
机译:许多鳞翅目的鳞片和许多鞘翅目的鞘翅具有特殊的微结构和纳米结构,它们会产生特殊的极化效应。它们由凹的多层腔构成。这导致两种不同的效果:在腔体中部的法向入射附近通过反射产生的干涉非偏振着色,以及在腔体周围的Brewster入射附近进行两次反射后在较低波长下产生的偏振干涉性着色。宏观外观类似于“点画效果”,其中一种成分偏振,而另一种成分不偏振。第一个可以用线性偏振器熄灭,从而改变颜色。在大多数昆虫中,该结构是局部对称的。因此,看不到任何宏观影响。在某些物种中,这种对称性被部分破坏,并且可以观察到轻微的影响。在迷人的新热带蝴蝶属Suneve的翼背表面中,两种大小不同的垂直结构使反射光偏振。较大的一个由凸形的覆盖鳞片组成,其顶点垂直落在以下鳞片的基部上,从而形成横越机翼的长极化谷(宽度为50μm)。较小的一个由刻度的脊(相距2μm)构成,这些脊在垂直方向上偏振光。可以将经过修改的多层结构沉积到钞票上,以创建防伪图案,以进一步保护和提高安全性。通过使用这样的结构可以产生不同的效果。光度的变化:一种特定的图案将由两个不同的区域组成:一个区域具有水平的凹面多层结构,另一个区域具有垂直的结构。在非偏振光下,这些不同区域的反射光谱相同,没有任何图案出现。在偏振光下,即通过线性偏振器,根据偏振器的方向,一个或另一个区域被部分熄灭,并出现图案。颜色变化:平面和凹槽表面的并置可以产生复合颜色。由于入射光的入射变化,这两个区域的颜色不同,但是第一个区域产生的颜色是非偏振的,而第二个区域是部分偏振的,可以用线性偏振器进行修改。

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