全息术
光学
叠加原理
调制(音乐)
相位调制
单色
计算全息
像素
多路复用
硅上液晶
相(物质)
计算机科学
编码(内存)
全息显示器
物理
液晶
数字全息术
空间光调制器
航程(航空)
调幅
液晶显示器
信号处理
虚拟现实
动态范围
高动态范围
光电子学
人工智能
RGB颜色模型
作者
Siqi Xiao,T H Wang,Kaifeng Liu,Yingjie Zhou,J. Zhang,Honglin Huang,Wanbiao Chen,Dongliang Tang,Fan Fan,Xi Zhang
摘要
ABSTRACT Liquid crystals (LCs) have emerged as versatile optical platforms for constructing a wide range of imaging and display devices through flexible modulation of light parameters. However, most LC‐based elements suffer from limited information capacity, restricting simultaneous multi‐channel imaging in both near and far fields. Here, we propose a multidimensional light‐field multiplexing paradigm based on LC coherent pixels. By analytically resolving the coherent superposition of LC phase responses, precise and independent encoding of dual‐channel nanoprinting patterns is achieved in the near field. Beyond near‐field control, we further introduce an improved holographic optimization framework that co‐designs the near‐field intensity distribution and far‐field phase profile in a unified manner. By incorporating off‐axis illumination with red, green, and blue (RGB) light, the far‐field functionality is extended from monochromatic holography to full‐color imaging, while fully preserving near‐field nanoprinting performance. For the first time, we experimentally demonstrate the integration of near‐field dual‐channel pattern switching and far‐field full‐color holography within a single LC element. This work breaks through the conventional information‐channel limitations of LC optical devices and establishes a general strategy for high‐integration, low‐cost, and multifunctional light‐field modulation devices, opening new avenues for advanced applications in information encryption, virtual reality, and multifunctional display technologies.
科研通智能强力驱动
Strongly Powered by AbleSci AI