Actively tunable electromagnetically induced transparency in hybrid Dirac-VO2 metamaterials
In this paper, we present a metamaterial structure of Dirac and vanadium dioxide (VO 2 ) and investigate its optical properties using the finite-difference time-domain (FDTD) technique. Using the phase transition feature of VO 2 , the design can realize active tuning of the plasmon induced transpare...
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Veröffentlicht in: | Optoelectronics letters 2025, Vol.21 (1), p.13-20 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this paper, we present a metamaterial structure of Dirac and vanadium dioxide (VO
2
) and investigate its optical properties using the finite-difference time-domain (FDTD) technique. Using the phase transition feature of VO
2
, the design can realize active tuning of the plasmon induced transparency (PIT) effect at terahertz frequency, thereby converting from a single PIT to a double-PIT. When VO
2
is in the insulating state, the structure is symmetric to obtain a single-band PIT effect. When VO
2
is in the metallic state, the structure turns asymmetric to realize a dual-band PIT effect. This design provides a reference direction for the design of actively tunable metamaterials. Additionally, it is discovered that the transparent window’s resonant frequency and the Fermi level in this structure have a somewhat linear relationship. In addition, the structure achieves superior refractive index sensitivity in the terahertz band, surpassing 1 THz/RIU. Consequently, the design exhibits encouraging potential for application in refractive index sensors and optical switches. |
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ISSN: | 1673-1905 1993-5013 |
DOI: | 10.1007/s11801-025-3239-1 |