arXiv:2510.03938physics.opticscs.CV2025-10被引 1

用全光学衍射解码器实现大景深超分辨率成像投影

Super-resolution image projection over an extended depth of field using a diffractive decoder

  • 数字编码+全光学衍射解码,无额外功耗完成超分辨投影
  • 实测扩展景深达约267倍波长,横向平面信噪比提升16倍
  • 适用于太赫兹到可见光等多波段系统,适合低功耗显示应用

图像投影系统需在保持高空间带宽积(SBP)的同时,实现高效的数据存储、计算与传输。本文提出一种混合式图像投影系统,通过结合卷积神经网络(CNN)数字编码器与全光学衍射解码器,实现大景深(DOF)下的超分辨率成像。输入图像由CNN编码为紧凑相位表示,经低分辨率(LR)投影仪投射后,由模拟衍射解码器完成全光学重建。该解码器完全被动,无需额外供电,可合成具有扩展景深的像素级超分辨图像。实验在太赫兹频段验证了概念可行性,系统可在不同电磁波段扩展。本方案在~267×W的扩展景深范围内实现高保真图像合成,且每个横向平面的SBP最高提升约16倍,显著降低显示系统的数据存储与传输负担,同时不增加光学解码器的能耗。该架构不仅适用于大景深超分辨率投影,还可推广至光学计量与显微成像等领域。

原文摘要 · Abstract (English)

Image projection systems must be efficient in data storage, computation and transmission while maintaining a large space-bandwidth-product (SBP) at their output. Here, we introduce a hybrid image projection system that achieves extended depth-of-field (DOF) with improved resolution, combining a convolutional neural network (CNN)-based digital encoder with an all-optical diffractive decoder. A CNN-based encoder compresses input images into compact phase representations, which are subsequently displayed by a low-resolution (LR) projector and processed by an analog diffractive decoder for all-optical image reconstruction. This optical decoder is completely passive, designed to synthesize pixel super-resolved image projections that feature an extended DOF while eliminating the need for additional power consumption for super-resolved image reconstruction. Our pixel super-resolution (PSR) image projection system demonstrates high-fidelity image synthesis over an extended DOF of ~267xW, where W is the illumination wavelength, concurrently offering up to ~16-fold SBP improvement at each lateral plane. The proof of concept of this approach is validated through an experiment conducted in the THz spectrum, and the system is scalable across different parts of the electromagnetic spectrum. This image projection architecture can reduce data storage and transmission requirements for display systems without imposing additional power constraints on the optical decoder. Beyond extended DOF PSR image projection, the underlying principles of this approach can be extended to various applications, including optical metrology and microscopy.

超分辨率衍射光学大景深低功耗

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