宽带
太赫兹辐射
材料科学
光电子学
超材料
光学
物理
作者
Hangbing Guo,Benwen Chen,Yuan Li,Weili Li,Shihe Yang,Sheng Wang,Wei Zhu,Jingbo Wu,He Ma,Xinping Zhang,Caihong Zhang,Kebin Fan,Huabing Wang,Biaobing Jin,Jian Chen,Peiheng Wu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-06-05
卷期号:19 (23): 21660-21668
被引量:7
标识
DOI:10.1021/acsnano.5c04447
摘要
Programmable metasurfaces have emerged as versatile tools for optical information processing across a wide range of frequencies. The existing designs in the terahertz band primarily work in reflective modes with a narrow bandwidth, leading to a complex optical path and challenges in integrating with other optical components. Here, we proposed a transmissive programmable metasurface based on a vanadium dioxide film transferred onto an ultrathin substrate and demonstrated its capability for matrix operations in a dual-layer cascaded configuration. The metasurface consists of 8 × 8 independently electrically addressable pixels, achieving an insertion loss of less than 3 dB in the ON state at frequencies below 1 THz. It exhibits a modulation depth exceeding 75% from 1.01 to 1.80 THz and greater than 50% in the OFF state across 0.51-1.80 THz, corresponding to a modulation bandwidth of up to 111%. The device can also operate under bent conditions. The proposed transmissive programmable metasurface, with its optically thin thickness, ease of stacking, and efficient transmission, presents a promising pathway for the realization of compact, high-efficiency, and multifunctional optical systems.
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