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Dynamic and complex optical patterns from colloids of cholesteric liquid crystal droplets

机译:胆甾型液晶液滴胶体的动态和复杂光学图案

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Drops or shells of a planar-aligned short-pitch cholesteric liquid crystal exhibit unique optical properties due to the combination of Bragg reflection in the cholesteric helix and a radial orientation of the helix axis. If such a droplet is illuminated from above, light is reflected into a continuous set of cones, the opening angles of which depend on where on the droplet the light hits its surface. For the wavelength that fulfills the Bragg condition the reflection is dramatically enhanced, yielding the light cones colored. A photonic cross communication scheme arises for certain angles, reflecting light back to the observer from a different droplet than the one originally illuminated. This gives rise to an intricate pattern of colored and circularly polarized spots. A number of interesting applications may be developed based on this pattern, e.g. in identification and authentication devices. We have carried out a detailed spectrophotometric analysis of the patterns, localized to individual spot maxima. A quantitative comparison between the measured spectra and the reflection wavelength expected from a model for the pattern generation allows us to conclude that the droplets are in fact not spherical but slightly ellipsoidal.
机译:平面排列的短节距胆甾型液晶的液滴或壳显示出独特的光学性质,这是由于胆甾型螺旋中的布拉格反射和螺旋轴的径向取向的结合。如果从上方照亮了这样的液滴,则光会反射到一组连续的视锥中,视锥的张角取决于光在其上击中其表面的位置。对于满足布拉格条件的波长,反射会大大增强,从而产生彩色的光锥。光子交叉通信方案出现在某些角度,将光从与最初照射的液滴不同的液滴反射回观察者。这产生了彩色和圆偏振斑点的复杂图案。可以基于这种模式来开发许多有趣的应用,例如。在身份验证设备中。我们对图案进行了详细的分光光度分析,并局限于单个最大斑点。从测得的光谱和模型生成的模型预期的反射波长之间的定量比较,我们可以得出这样的结论:液滴实际上不是球形的,而是略呈椭圆形的。

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