论文标题

时空数字元信息如何执行模拟信号处理?

How Do Space-Time Digital Metasurfaces Serve to Perform Analog Signal Processing?

论文作者

Rajabalipanah, Hamid, Abdolali, Ali, Iqbal, Shahid, Zhang, Lei, Cui, Tie Jun

论文摘要

为了尝试使用子波长元信息实现模拟信号处理,在本文中,我们证明了基于空间傅立叶变换的关键特性,首次展示了可编程时间调节的跨侧处理器的实验证明。利用时空编码策略使本地,独立和实时工程不仅可以对中央和谐波频率的反射数字元原子的相位概况进行。证明了几个说明性的例子表明,所提出的多功能计算元表面能够实现大量有用的数学运算符,包括一阶空间分化,一阶空间集成以及频率转换均附有频率分化的一阶空间集成以及整数分化方程。与最近的提案不同,设计的时间调节信号处理器有效地为包含具有可接受的增益水平的宽空间频率带宽的输入信号运行。还报道了原理模拟以及图像处理功能(例如边缘检测)的成功实现。这个基于波浪的计算系统可以为在超快方程求解,实时和连续信号处理以及成像中具有高度有希望的应用程序的可编程元信息的未来发展设定方向。

In the quest to realize analog signal processing using sub-wavelength metasurfaces, in this paper, we demonstrate the first experimental demonstration of programmable time-modulated metasurface processors based on the key properties of spatial Fourier transformation. Exploiting space-time coding strategy enables local, independent, and real-time engineering of not only amplitude but also phase profile of the contributing reflective digital meta-atoms at both central and harmonic frequencies. Several illustrative examples are demonstrated to show that the proposed multifunctional calculus metasurface is capable of implementing a large class of useful mathematical operators, including 1st- and 2nd-order spatial differentiation, 1st-order spatial integration, and integro-differential equation solving accompanied by frequency conversions. Unlike the recent proposals, the designed time-modulated signal processor effectively operates for input signals containing wide spatial frequency bandwidths with an acceptable gain level. Proof-of-principle simulations are also reported along with the successful realization of image processing functions like edge detection. This time-varying wave-based computing system can set the direction for future developments of programmable metasurfaces with highly promising applications in ultrafast equation solving, real-time and continuous signal processing, and imaging.

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