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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Generation of Aspherical Optical Lenses via Arrested Spreading and Pinching of a Cross-Linkable Liquid
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Generation of Aspherical Optical Lenses via Arrested Spreading and Pinching of a Cross-Linkable Liquid

机译:通过可交联液体的阻隔扩散和收缩产生非球面光学透镜

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摘要

Aspherical optical lenses with spatially varying curvature are desired for capturing high quality, aberration free images in numerous optical applications. Conventionally such lenses are prepared by multistep top-down processes which are expensive, time-consuming, and prone to high failure rate. In this context, an alternate method is presented here based on arrested spreading of a sessile drop of a transparent, cross-linkable polymeric liquid on a solid substrate heated to an elevated temperature. Whereas surface tension driven flow tends to render it spherical, rapid cross-linking arrests such flow so that nonequilibrium aspherical shapes are attained. It is possible to tune also the initial state of the drop via delayed pinching of a liquid cylinder which precedes its release on the substrate. This method has led to the generation of a wide variety of optical lenses, ranging from spherical piano convex to superspherical solid immersion to exotic lenses not achieved via conventional methods.
机译:为了在许多光学应用中捕获高质量,无像差的图像,需要具有曲率在空间上变化的非球面光学透镜。常规地,这种透镜是通过多步自上而下的过程制备的,该过程昂贵,费时并且容易出现高故障率。在这种情况下,这里提出了一种替代方法,该方法基于透明的,可交联的聚合物液体的无滴液滴在加热到高温的固体基质上的停滞扩散。表面张力驱动的流动倾向于使其呈球形,而快速交联则阻止了这种流动,从而获得了非平衡非球面形状。也可以通过延迟挤压液滴来调节液滴的初始状态,该延迟在将液滴释放到基板上之前进行。这种方法导致了各种各样的光学透镜的产生,从球形钢琴凸透镜到超球形固体浸入,再到传统方法无法实现的奇异透镜。

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