Huang Jianzhou, Wu Xudong, Xiong Chenjie, Zhang Jia, Hu Bin
School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China.
National Key Laboratory on Near-Surface Detection, Beijing 100072, China.
Nanophotonics. 2025 Jul 15;14(17):2909-2922. doi: 10.1515/nanoph-2025-0204. eCollection 2025 Aug.
The terahertz (THz) frequency band has abundant spectrum resources, which is suitable for constructing communication systems with ultra-high data rates and extremely low latency. Multiple input multiple output (MIMO) devices are crucial for realizing THz communication, and the synchronous transmission and noncorrelation of different channels are the keys to MIMO technology. This paper proposes a graphene-based polarization spatial diversity and multiplexing MIMO surface (PDM-MIMOS) with 2 × 2 metasurface arrays. Dual-polarized channels can be modulated synchronously by the same metasurface modulator and received by the receiver (RX) without crosstalk. Experimental results demonstrate that the modulation cut-off frequency can reach up to 30 kHz. By constructing a continuous THz wave communication system, it is demonstrated that PDM-MIMOS can achieve spatial diversity and multiplexing, thereby improving communication quality and data rate. Furthermore, we compare the signal quality of THz communication and visible light communication under villainous weather conditions. The experiment proves that the communication reliability of THz communication is 19.4 times that of visible light communication. This work offers potential for compact, dual-polarized modulators that can be applied in THz communication, detection, and imaging.
太赫兹(THz)频段拥有丰富的频谱资源,适合构建具有超高数据速率和极低延迟的通信系统。多输入多输出(MIMO)设备对于实现太赫兹通信至关重要,不同信道的同步传输和非相关性是MIMO技术的关键。本文提出了一种基于石墨烯的具有2×2超表面阵列的极化空间分集与复用MIMO表面(PDM-MIMOS)。双极化信道可由同一超表面调制器同步调制,并由接收器(RX)接收而无串扰。实验结果表明,调制截止频率可达30 kHz。通过构建连续太赫兹波通信系统,证明了PDM-MIMOS能够实现空间分集与复用,从而提高通信质量和数据速率。此外,我们比较了恶劣天气条件下太赫兹通信和可见光通信的信号质量。实验证明,太赫兹通信的通信可靠性是可见光通信的19.4倍。这项工作为可应用于太赫兹通信、检测和成像的紧凑型双极化调制器提供了潜力。