4.6 Article

Switchable and Dual-Tunable Multilayered Terahertz Absorber Based on Patterned Graphene and Vanadium Dioxide

期刊

MICROMACHINES
卷 12, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/mi12060619

关键词

multilayered; switchable; dual-tunable; terahertz; patterned graphene; phase-change material vanadium dioxide

资金

  1. Research Innovation Fund for College Students of Beijing University of Posts and Telecommunications
  2. Fund of State Key Laboratory of Information Photonics and Optical Communications (Beijing University of Posts and Telecommunications), China [IPOC2020ZZ01, IPOC2019ZT07]
  3. National Natural Science Foundation of China [61774021]

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This paper proposes a switchable and dual-tunable terahertz absorber based on patterned graphene and vanadium dioxide, allowing for absorption property tuning by controlling Fermi level and temperature, with various working modes and high absorption performance maintained.
In this paper, a switchable and dual-tunable terahertz absorber based on patterned graphene and vanadium dioxide is proposed and analyzed. By controlling the Fermi level of graphene and the temperature of vanadium dioxide, the device's function can be switched and its absorbing properties can be tuned. When the vanadium dioxide is in an insulator state, the device can be switched from near-total reflection (>97%) to ultra-broadband absorption (4.5-10.61 THz) as the Fermi level of graphene changes from 0 to 0.8 eV. When the vanadium dioxide is changed to a metal state, the device can act as a single-band absorber (when the Fermi level of graphene is 0 eV) and a dual-band absorber with peaks of 4.16 THz and 7.3 THz (when the Fermi level of graphene is 0.8 eV). Additionally, the absorber is polarization-insensitive and can maintain a stable high-absorption performance within a 55 degrees incidence angle. The multilayered structure shows great potential for switchable and tunable high-performance terahertz devices.

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