Photonic terahertz phased array via selective excitation of nonlinear Pancharatnam-Berry elements
Abstract
Abstract Phased arrays are crucial in various technologies, such as radar and wireless communications, due to their ability to precisely control and steer electromagnetic waves. This precise control improves signal processing and enhances imaging performance. However, extending phased arrays to the terahertz (THz) frequency range has proven challenging, especially for high-frequency operation, broadband performance, two-dimensional (2D) phase control with large antenna arrays, and flexible phase modulation. Here, we introduce a photonic platform to realize a THz phased array that bypasses the above challenges. Our method employs 2D phase coding with 2-bit across a broad THz frequency range from 0.8 to 1.4 THz. The core of our design is a pixelated nonlinear Pancharatnam-Berry (PB) metasurface driven by a spatially modulated femtosecond laser for selective excitation of the desired PB elements, allowing precise phase and wavefront control of the emitted THz signals. We showcase the effectiveness of our method through four proof-of-concept applications: single beamforming, dual beamforming, imaging, and vortex beam generation. The realized photonic platform provides a promising pathway for developing broadband phased arrays in the THz regime.
Article Details
Authors (14)
Li Niu
Xi Feng
MOE Key Laboratory of Bioinorganic and Synthetic Chemistry, GBRCE for Functional Molecular Engineering, School of Chemistry
Xueqian Zhang
State Key Laboratory for Vegetation Structure, Function and Construction, College of Life Sciences, Zhejiang University
Yongchang Lu
Qingwei Wang
Quan Xu
Xieyu Chen
Jiajun Ma
Haidi Qiu
Wei E. I. Sha
Shuang Zhang
Andrea Alù
Weili Zhang
Jiaguang Han