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High-fidelity spherical cholesteric liquid crystal Bragg reflectors generating unclonable patterns for secure authentication

机译:高保真球形胆甾型液晶布拉格反射器产生不可克隆的图案以进行安全认证

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摘要

Monodisperse cholesteric liquid crystal microspheres exhibit spherically symmetric Bragg reflection, generating, via photonic cross communication, dynamically tuneable multi-coloured patterns. These patterns, uniquely defined by the particular sphere arrangement, could render cholesteric microspheres very useful in countless security applications, as tags to identify and authenticate their carriers, mainly physical objects or persons. However, the optical quality of the cholesteric droplets studied so far is unsatisfactory, especially after polymerisation, a step required for obtaining durable samples that can be used for object identification. We show that a transition from droplets to shells solves all key problems, giving rise to sharp patterns and excellent optical quality even after polymerisation, the polymerised shells sustaining considerable mechanical deformation. Moreover, we demonstrate that, counter to prior expectation, cross communication takes place even between non-identical shells. This opens additional communication channels that add significantly to the complexity and unique character of the generated patterns.
机译:单分散胆甾型液晶微球表现出球对称的布拉格反射,通过光子交叉通信产生动态可调的多色图案。这些模式由特定的球体布置唯一定义,可以使胆甾型微球体在无数的安全应用中非常有用,因为它们可以用作识别和认证其载体(主要是物理物体或人)的标签。然而,迄今为止研究的胆甾型液滴的光学质量不能令人满意,特别是在聚合之后,这是获得可用于物体识别的耐用样品所需的步骤。我们表明,从液滴到壳的过渡解决了所有关键问题,即使在聚合后仍会产生清晰的图案和出色的光学质量,聚合后的壳仍保持相当大的机械变形。此外,我们证明,与先前的预期相反,即使在不同的外壳之间也会发生交叉通信。这打开了额外的通信通道,大大增加了所生成模式的复杂性和独特性。

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