Refractive freeform components are becoming increasingly relevant for generating controlled patterns of light, because of their capability to spatially-modulate optical signals with high efficiency and low background. However, the use of these devices is still limited by difficulties in manufacturing macroscopic elements with complex, 3-dimensional (3D) surface reliefs. Here, 3D-printed and stretchable magic windows generating light patterns by refraction are introduced. The shape and, consequently, the light texture achieved can be changed through controlled device strain. Cryptographic magic windows are demonstrated through exemplary light patterns, including micro-QR-codes, that are correctly projected and recognized upon strain gating while remaining cryptic for as-produced devices. The light pattern of micro-QR-codes can also be projected by two coupled magic windows, with one of them acting as the decryption key. Such novel, freeform elements with 3D shape and tailored functionalities is relevant for applications in illumination design, smart labels, anti-counterfeiting systems, and cryptographic communication.
翻译:由于这些装置具有高效率和低背景的空间调节光信号的能力,因此对产生受控光谱越来越具有相关性。然而,这些装置的使用仍然受到制造具有复杂、三维(3D)表面松动的大型成像元件的困难的限制。在这里,引入了3D打印和可伸展的魔术窗口,通过折射产生光谱模式。通过受控装置菌株可以改变其形状和因此实现的光质纹理。加密魔法窗口通过示范性光谱模型展示,包括微QR码,在压力显微时正确预测和识别,同时保留对原生产装置的加密。微QR码的光谱模式也可以由两个相连接的神奇窗口来预测,其中一个窗口作为解密键。这些3D形状和定制功能的新式、自由式成型的成像元件和功能对于在照明设计、智能标签、反仿系统以及加密通信中的应用都具有相关性。