衍射
超材料
光学
反射(计算机编程)
微波食品加热
物理
电磁辐射
光圈(计算机存储器)
材料科学
灵活性(工程)
物理光学
计算机科学
光子学
传输(电信)
光电子学
衍射效率
微波工程
飞秒
合成孔径雷达
电磁学
波传播
数值孔径
作者
Lei Zhang,Yue Zheng,Xiao Qing Chen,Shuo Liu,Qiang Cheng,Tie Jun Cui
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2026-03-31
卷期号:13 (9): 2525-2534
标识
DOI:10.1021/acsphotonics.5c03117
摘要
Diffraction is a fundamental wave phenomenon that describes the spreading of waves when they encounter an obstacle or aperture comparable to their wavelength. Beyond the conventional spatial diffraction, waves can also exhibit diffraction-like behavior in temporal and spatiotemporal domains. In microwave regime, the diffraction plays a crucial role in shaping electromagnetic fields; however, its time and space-time counterparts with reprogrammable characteristics remain largely unexplored. Here, we investigate the time and space-time diffraction in the microwave band using a transmission-reflection-integrated programmable metasurface (TRPM). The physical feasibility of time and space-time diffraction is first established by theoretical analyses and numerical simulations. To enable experimental realization, a 1 bit amplitude-programmable element capable of switching between the reflection and transmission modes is presented, from which a TRPM prototype is fabricated and measured. Experimental results demonstrate that distinct time diffraction phenomena are observed in the frequency domain, while space-time diffraction effects emerge in the momentum-frequency domain by appropriately reconfiguring the time and space-time coding matrices of TRPM. The good agreement between experimental and numerical results illustrates the feasibility and flexibility of the proposed TRPM in realizing the programmable space-time diffraction, highlighting its potential as a versatile platform to explore fundamental physics and exotic functions in space-time metamaterials and metasurfaces.
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