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Unconventional High-Performance Laser Protection System Based on Dichroic Dye-Doped Cholesteric Liquid Crystals

机译:基于二向色染料掺杂胆甾型液晶的非常规高性能激光保护系统

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摘要

High-performance and cost-effective laser protection system is of crucial importance for the rapid advance of lasers in military and civilian fields leading to severe damages of human eyes and sensitive optical devices. However, it is crucially hindered by the angle-dependent protective effect and the complex preparation process. Here we demonstrate that angle-independence, good processibility, wavelength tunability, high optical density and good visibility can be effectuated simultaneously, by embedding dichroic anthraquinone dyes in a cholesteric liquid crystal matrix. More significantly, unconventional two-dimensional parabolic protection behavior is reported for the first time that in stark contrast to the existing protection systems, the overall parabolic protection behavior enables protective effect to increase with incident angles, hence providing omnibearing high-performance protection. The protective effect is controllable by dye concentration, LC cell thickness and CLC reflection efficiency, and the system can be made flexible enabling applications in flexible and even wearable protection devices. This research creates a promising avenue for the high-performance and cost-effective laser protection, and may foster the development of optical applications such as solar concentrators, car explosion-proof membrane, smart windows and polarizers.
机译:高性能和具有成本效益的激光保护系统对于在军事和民用领域中迅速发展的激光至关重要,这会严重损害人眼和敏感的光学设备。但是,它受到角度依赖性保护作用和复杂制备过程的严重阻碍。在此我们证明,通过将二色性蒽醌染料嵌入胆甾型液晶基质中,可以同时实现角度独立性,良好的可加工性,波长可调性,高光密度和良好的可见性。更重要的是,首次报道了非常规的二维抛物线保护行为,与现有的保护系统形成鲜明对比的是,整体的抛物线保护行为使保护作用随入射角的增加而增加,从而提供全方位的高性能保护。可以通过染料浓度,LC池厚度和CLC反射效率来控制保护效果,并且该系统可以变得灵活,从而可以应用于灵活甚至可穿戴的保护设备中。这项研究为高性能和具有成本效益的激光保护开辟了一条有希望的途径,并可能促进光学应用的发展,例如太阳能聚光器,汽车防爆膜,智能窗户和偏光镜。

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