Department of Electrical and Computer Engineering, Rutgers, the State University of New Jersey, Piscataway, USA.
Sci Rep. 2023 May 5;13(1):7338. doi: 10.1038/s41598-023-34195-8.
Recent advancement in digital coding metasurfaces incorporating spatial and temporal modulation has enabled simultaneous control of electromagnetic (EM) waves in both space and frequency domains by manipulating incident EM waves in a transmissive or reflective fashion, resulting in time-reversal asymmetry. Here we show in theory and experiment that a digitally space-time-coded metamaterial (MTM) antenna with spatiotemporal modulation at its unit cell level can be regarded as a radiating counterpart of such digital metasurface, which will enable nonreciprocal EM wave transmission and reception via surface-to-leaky-wave transformation and harmonic frequency generation. Operating in the fast wave (radiation) region, the space-time-coded MTM antenna is tailored in a way such that the propagation constant of each programmable unit cell embedded with varactor diodes can toggle between positive and negative phases, which is done through providing digital sequences by using a field-programmable gate array (FPGA). Owing to the time-varying coding sequence, harmonic frequencies are generated with different main beam directions. Furthermore, the space time modulation of the digitally coded MTM antenna allows for nonreciprocal transmission and reception of EM waves by breaking the time-reversal symmetry, which may enable many applications, such as simultaneous transmitting and receiving, unidirectional transmission, radar sensing, and multiple-input and multiple-output (MIMO) beamformer.
最近在数字编码超表面中加入空间和时间调制的进展使得人们能够通过以透射或反射的方式操纵入射电磁波来同时控制电磁波在空间和频率域中的传播,从而产生时间反转不对称性。在这里,我们从理论和实验两方面表明,在单元级进行时空调制的数字时空编码超材料(MTM)天线可以被视为这种数字超表面的辐射对应物,这将通过表面到漏波变换和谐波频率产生来实现非互易的电磁波传输和接收。在快波(辐射)区域中,时空编码 MTM 天线通过使用现场可编程门阵列(FPGA)提供数字序列来调整每个可编程单元的传播常数,使其能够在正相和负相之间切换。每个可编程单元都嵌入了变容二极管。由于时变编码序列,不同的主波束方向会产生谐波频率。此外,数字编码 MTM 天线的时空调制通过打破时间反转对称性允许电磁波的非互易传输和接收,这可能会实现许多应用,例如同时传输和接收、单向传输、雷达感应以及多输入多输出(MIMO)波束形成器。