论文标题

用于轴上反射性光学计算的相互偏移

Reciprocal Metasurfaces for On-axis Reflective Optical Computing

论文作者

Momeni, Ali, Rajabalipanah, Hamid, Rahmanzadeh, Mahdi, Abdolali, Ali, Achouri, Karim, Asadchy, Viktar, Fleury, Romain

论文摘要

模拟计算已成为实时和并行连续数据处理的有前途的候选人。本文提出了一种在轴加处理通道的反射侧实现不对称光传递函数(OTF)的相互方式。严格的证明,相互交流面的交叉极化令人兴奋的正常极化能力(CPENP)避免了绿色功能方法在实施反射性光学信号处理时的著名挑战,同时提供了双方偏极化的双重计算通道。经过全面的理论讨论和作为概念证明,全dielectric光学跨表面的设计经过精心设计,以展示所需的表面极化,从而反映了第一个衍生物并从正常方向上提取撞击图像的边缘。拟议的研究提供了一种灵活的设计方法,用于基于轴上的基于跨表交的光学信号处理,并且还极大地促进了超快模拟计算和图像处理所需的实验设置。

Analog computing has emerged as a promising candidate for real-time and parallel continuous data processing. This paper presents a reciprocal way for realizing asymmetric optical transfer functions (OTFs) in the reflection side of the on-axis processing channels. It is rigorously demonstrated that the presence of Cross-polarization Exciting Normal Polarizabilities (CPENP) of a reciprocal metasurface circumvents the famous challenge of Green's function approach in implementation of on-axis reflective optical signal processing while providing dual computing channels under orthogonal polarizations. Following a comprehensive theoretical discussion and as a proof of concept, an all-dielectric optical metasurface is elaborately designed to exhibit the desired surface polarizabilities, thereby reflecting the first derivative and extracting the edges of images impinging from normal direction. The proposed study offers a flexible design method for on-axis metasurface-based optical signal processing and also, dramatically facilitates the experimental setup required for ultrafast analog computation and image processing.

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