Zhang Jiahua, Chen Shouqian, Wang Di, Li Xueshen, Yu Jiaqian, Fan Zhigang, Huang Feng
Opt Express. 2021 Sep 27;29(20):32196-32207. doi: 10.1364/OE.439106.
Analog optical computing based on metasurfaces has attracted much attention for achieving high-speed calculating without the electronic processing unit. Wavefront coding imaging systems involve the joint design of an encoded image-capturing module and decoding postprocessing algorithms to obtain a required final image. The decoding postprocessing algorithms, as a typical deconvolution computation, require an additional electronic processing unit to yield a high-quality decoded image. We demonstrate an analog optical deconvolution computing kernel based on nanoantennas metasurfaces for the postprocessing calculation of wavefront coding systems. Numerical simulations are presented to prove that the encoded point spread function can be refocused through a designed optical computing metasurface. The proposed approach opens an opportunity for real-time recovering images in wavefront coding optical systems.
基于超表面的模拟光学计算因无需电子处理单元就能实现高速计算而备受关注。波前编码成像系统涉及编码图像捕获模块和解码后处理算法的联合设计,以获得所需的最终图像。解码后处理算法作为一种典型的去卷积计算,需要额外的电子处理单元才能产生高质量的解码图像。我们展示了一种基于纳米天线超表面的模拟光学去卷积计算内核,用于波前编码系统的后处理计算。通过数值模拟证明,编码点扩散函数可通过设计的光学计算超表面重新聚焦。所提出的方法为波前编码光学系统中的图像实时恢复提供了机会。