Shabanpour Javad, Beyraghi Sina, Cheldavi Ahmad
Department of Electrical Engineering, Iran University of Science and Technology, Narmak, Tehran, 16486-13114, Iran.
Sci Rep. 2020 Jun 2;10(1):8950. doi: 10.1038/s41598-020-65533-9.
In this paper, for the first time, a new generation of ultrafast reprogrammable multi-mission bias encoded metasurface is proposed for dynamic terahertz wavefront engineering by employing VO2 reversible and fast monoclinic to tetragonal phase transition. The multi-functionality of our designed VO2 based coding metasurface (VBCM) was guaranteed by elaborately designed meta-atom comprising three-patterned VO2 thin films whose operational statuses can be dynamically tuned among four states of "00"-"11" by merely changing the biasing voltage controlled by an external Field-programmable gate array platform. Capitalizing on such meta-atom design and by driving VBCM with different spiral-like and spiral-parabola-like coding sequences, single vortex beam and focused vortex beam with interchangeable orbital angular momentum modes were satisfactorily generated respectively. Additionally, by adopting superposition theorem and convolution operation, symmetric/asymmetric multiple beams and arbitrarily-oriented multiple vortex beams in pre-demined directions with different topological charges are realized. Several illustrative examples successfully have clarified that the proposed VBCM is a promising candidate for solving crucial terahertz challenges such as high data rate wireless communication where ultrafast switching between several missions is required.
在本文中,首次提出了新一代超快可重新编程的多任务偏置编码超表面,通过利用VO2可逆且快速的单斜相到四方相转变来实现动态太赫兹波前工程。我们设计的基于VO2的编码超表面(VBCM)的多功能性由精心设计的超原子保证,该超原子由三个图案化的VO2薄膜组成,其工作状态可通过仅改变由外部现场可编程门阵列平台控制的偏置电压在“00”-“11”的四种状态之间动态调谐。利用这种超原子设计,并通过用不同的螺旋状和螺旋-抛物线状编码序列驱动VBCM,分别令人满意地产生了具有可互换轨道角动量模式的单涡旋光束和聚焦涡旋光束。此外,通过采用叠加定理和卷积运算,实现了在预定义方向上具有不同拓扑电荷的对称/非对称多光束和任意取向的多涡旋光束。几个说明性示例成功地阐明了所提出的VBCM是解决关键太赫兹挑战(如需要在多个任务之间进行超快切换的高数据速率无线通信)的有前途的候选者。