论文标题
带有白光照明的彩色光学涡旋
Colorful Optical Vortices with White Light Illumination
论文作者
论文摘要
光的轨道角动量(OAM)在光学通信,超分辨率成像和高维量子计算中的应用方面具有巨大的希望。但是,光源的时空连贯性对于产生绿色束光束至关重要,因为不连贯的环境光会导致可见光谱中的多色和遮盖的oaM梁。在这里,我们将OAM的应用扩展到环境照明条件。通过将螺旋相的小型化并将其与结构颜色过滤器集成在一起,我们仅使用不连贯的白光源实现时空相干性。这些光学元素充当构建块,以彩色光学涡流的形式编码颜色和OAM信息。因此,包含这些涡旋的匹配位置的成对透明基板构成了相互的光锁和密钥系统。由于OAM的多个螺旋特征状态,可以进一步扩展成对耦合以形成一对多匹配和验证方案。具有宽带白光的生成和解码的色彩光学涡旋可能会在反爆炸,光学计量学,高容量光学加密和芯片3D光子设备中找到潜在的应用。
The orbital angular momentum (OAM) of light holds great promise for applications in optical communication, super-resolution imaging, and high-dimensional quantum computing. However, the spatio-temporal coherence of the light source has been essential for generating OAM beams, as incoherent ambient light would result in polychromatic and obscured OAM beams in the visible spectrum. Here, we extend the applications of OAM to ambient lighting conditions. By miniaturizing spiral phase plates and integrating them with structural color filters, we achieve spatio-temporal coherence using only an incoherent white light source. These optical elements act as building blocks that encode both color and OAM information in the form of colorful optical vortices. Thus, pairs of transparent substrates that contain matching positions of these vortices constitute a reciprocal optical lock and key system. Due to the multiple helical eigenstates of OAM, the pairwise coupling can be further extended to form a one-to-many matching and validation scheme. Generating and decoding colorful optical vortices with broadband white light could find potential applications in anti-counterfeiting, optical metrology, high-capacity optical encryption, and on-chip 3D photonic devices.