Zhang Xin Ge, Yu Qian, Jiang Wei Xiang, Sun Ya Lun, Bai Lin, Wang Qiang, Qiu Cheng-Wei, Cui Tie Jun
State Key Laboratory of Millimeter Waves School of Information Science and Engineering Southeast University Nanjing 210096 China.
Department of Electrical and Computer Engineering National University of Singapore Singapore 119620 Singapore.
Adv Sci (Weinh). 2020 Apr 16;7(11):1903382. doi: 10.1002/advs.201903382. eCollection 2020 Jun.
Programmable metasurfaces allow dynamic and real-time control of electromagnetic (EM) waves in subwavelength resolution, holding extraordinary potentials to establish meta-systems. Achieving independent and real-time controls of orthogonally-polarized EM waves via the programmable metasurface is attractive for many applications, but remains considerably challenging. Here, a polarization-controlled dual-programmable metasurface (PDPM) with modular control circuits is proposed, which enables a dibit encoding capability in modifying the phase profiles of - and -polarized waves individually. The constructed extended interface circuit is able to extend the number of control interfaces from a field programmable gate array by orders of magnitude and also possesses memory function, which enhance hugely the rewritability, scalability, reliability, and stability of PDPM. As a proof-of-concept, a wave-based exclusive-OR logic gate platform for spin control of circularly-polarized waves, a fixed-frequency wide-angle dual-beam scanning system, and a dual-polarized shared-aperture antenna are demonstrated using a single PDPM. The proposed PDPM opens up avenues for realizing more advanced and integrated multifunctional devices and systems that have two independent polarization-controlled signal channels, which may find many applications in future-oriented intelligent communication, imaging, and computing technologies.
可编程超表面能够以亚波长分辨率对电磁波(EM)进行动态实时控制,在构建超系统方面具有巨大潜力。通过可编程超表面实现对正交极化电磁波的独立实时控制对许多应用具有吸引力,但仍极具挑战性。在此,提出了一种具有模块化控制电路的偏振控制双可编程超表面(PDPM),它能够在分别修改水平极化和垂直极化波的相位分布时实现双比特编码能力。所构建的扩展接口电路能够将现场可编程门阵列的控制接口数量扩展几个数量级,并且还具有存储功能,这极大地提高了PDPM的可重写性、可扩展性、可靠性和稳定性。作为概念验证,使用单个PDPM展示了用于圆极化波自旋控制的基于波的异或逻辑门平台、固定频率广角双波束扫描系统以及双极化共享孔径天线。所提出的PDPM为实现具有两个独立偏振控制信号通道的更先进、集成的多功能设备和系统开辟了道路,这可能在面向未来的智能通信、成像和计算技术中找到许多应用。