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Waveguide Encoded Lattices (WELs): Slim Polymer Films with Panoramic Fields of View (FOV) and Multiple Imaging Functionality

机译:波导编码晶格(WEL):具有全景视场(FOV)和多重成像功能的超薄聚合物膜

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摘要

When encoded with a 3D network of interconnected and pentadirectional waveguides, an otherwise passive polymer film transforms into an intelligent optical element-a waveguide encoded lattice (WEL)-that combines a panoramic field of view, infinite depth of field and powerful capacity to perform multiple imaging operations such as divergence-free transmission, focusing, and inversion. The lattices are moreover operable with coherent and incoherent light at all visible wavelengths, both individually (e.g., narrow band sources such as lasers, light-emitting diodes) and collectively (e.g., incandescent sources). This combination of properties is unprecedented in single-component films and the WEL structures represent a new class of flexible, slim films that could confer advanced optical functionalities when integrated with light-based technologies (e.g., solar panels, smart phone cameras, and smart screens) and are amenable to the design and fabrication of new miniaturized optical and optoelectronic devices.
机译:当使用互连和五方向的波导的3D网络进行编码时,原本无源的聚合物膜将转换为智能光学元件-波导编码的晶格(WEL)-结合了全景视野,无限景深和强大的执行多种功能的能力成像操作,例如无散度传输,聚焦和反演。此外,这些晶格可分别用于所有可见波长处的相干和非相干光,既可单独使用(例如,窄带光源,例如激光器,发光二极管),也可单独使用(例如,白炽光源)。这种特性的组合在单组分薄膜中是空前的,WEL结构代表了新型的柔性薄型薄膜,当与基于光的技术(例如太阳能电池板,智能手机摄像头和智能屏幕)集成时,它们可以赋予先进的光学功能),并且适用于新型微型光学和光电设备的设计和制造。

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