宽带
GSM演进的增强数据速率
极化(电化学)
相(物质)
波前
光学滤波器
滤波器(信号处理)
空间频率
相位调制
空间滤波器
材料科学
光学
波长
组分(热力学)
参数统计
严格耦合波分析
窄带
光电子学
超材料
调制(音乐)
物理
边缘检测
计算机科学
相位板
频率调制
微波食品加热
折射率
作者
Kenan Guo,Yue Jiang,Shuyuan Xiao,Tingting Liu
摘要
Performing simultaneous depth-of-field (DoF) extension and edge enhancement within a single optical element remains a fundamental challenge in advanced imaging. Here, we propose a wavelength-tunable nonlocal Huygens' metasurface capable of simultaneously extracting depth and edge features of images in a single-shot exposure. Using the selective polarization response of the Huygens' metasurfaces, the circularly polarized converted component undergoes geometric phase modulation for wavefront shaping to extend the DoF, while the non-converted component acts as a spatial frequency filter to enhance edge contrast. The integration of a phase-change material, Sb$_{2}$S$_{3}$, enables continuous tuning of the resonance wavelength across a range of 100 nm by modulating its refractive index, granting the system excellent broadband spectral adaptability. This work offers a novel and compact solution for real-time depth sensing and feature extraction in applications such as autonomous navigation and biomedical imaging.
科研通智能强力驱动
Strongly Powered by AbleSci AI