Xi Chenyue, Zhang Longhui, Zhang Yufan, Hu Fangrong, Jiang Mingzhu, Zhou Yatao, Zhou Zhi, Zhao Zengxiu
Opt Lett. 2025 Jul 1;50(13):4290-4293. doi: 10.1364/OL.558092.
Terahertz (THz) polarization modulators play a critical role in application-oriented terahertz wireless communication. Currently, the highly efficient multifunctional polarization state modulator-based optical excitation continues to be a challenge due to limitations in manipulation methods. In this study, we proposed a vanadium dioxide (VO)-metal hybrid bilayer metasurface. By independently manipulating the insulator-to-metal transition of VO bars on both surfaces under two pump excitations, the metadevice can freely switch between left-handed circular polarization, right-handed circular polarization, and linear polarization states at a resonance frequency. A ternary encoding for the output polarization states was proposed. Furthermore, an equivalent circuit model was also established to demonstrate its physical mechanism of resonances. The results not only provide what we believe to be a novel method to design multifunction metadevices but also promote the development of polarization modulation technology in terahertz communications.
太赫兹(THz)偏振调制器在面向应用的太赫兹无线通信中起着关键作用。目前,由于操纵方法的限制,基于高效多功能偏振态调制器的光激发仍然是一个挑战。在本研究中,我们提出了一种二氧化钒(VO)-金属混合双层超表面。通过在两个泵浦激发下独立操纵两个表面上VO棒的绝缘体-金属转变,该超器件可以在共振频率下在左旋圆偏振、右旋圆偏振和线性偏振态之间自由切换。提出了输出偏振态的三元编码。此外,还建立了一个等效电路模型来证明其共振的物理机制。这些结果不仅提供了一种我们认为新颖的设计多功能超器件的方法,而且促进了太赫兹通信中偏振调制技术的发展。