Laser & Photonics Review· 2026Q1
VO2 Metayüzey Tabanlı Ultra-Yüksek Kontrastlı Terahertz Modülasyonu ve Pikselleştirilmiş Ekran
Ultra‐High Contrast Terahertz Modulation and Pixelated Display Based on VO 2 Metasurface
- 0atıf
- Q1SCImago
- 2026yıl
Kısa özet
Bir VO2 metayüzeyi, 0.88 THz'de 10.000'lik ultra yüksek iletim anahtarlama oranı elde ederek, 0.2-1.3 THz geniş bant genişliğinde %99,9'un üzerinde modülasyon derinliğine sahip pikselleştirilmiş bir ekranı mümkün kılıyor.
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Özet (abstract)
ABSTRACT The development of high‐performance, dynamically reconfigurable devices is important for advancing Terahertz (THz) technology. Vanadium dioxide (VO 2 ), a metal‐insulator transition oxide with a near‐room‐temperature critical point, is promising for infrared (IR) and THz modulation. However, achieving simultaneous high transmission in the ON state, deep suppression in the OFF state, and electrical programmability in a broadband THz device remains challenging. Here, we propose an electrically controlled VO 2 THz metasurface that overcomes these limitations. Our design yields an ultra‐high transmission switching ratio of 10 000 at 0.88 THz in simulation and a broad bandwidth from 0.2 to 1.3 THz (switching ratio >100). It maintains a high transmission of 0.85 in the insulating state while suppressing transmission to ∼10 −4 in the metallic state, corresponding to a modulation depth exceeding 99.9%. Based on the multiple THz transmission levels, we demonstrate a proof‐of‐concept reconfigurable pixelated display, which highlights the potential of our high‐contrast metasurface for THz spatial light modulation applications. By integrating our VO 2 metasurface with a Ni/Pt bilayer for electrical gating of spintronic THz emission, a compact, amplitude‐modulated THz source is fabricated. Our work establishes a robust platform for high‐performance, programmable THz devices, bridging the gap between static meta‐materials and dynamic photonic systems for imaging, communications, and integrated applications.
Yazarların özeti; kaynağından alınmıştır. Laser & Photonics Review, 2026 · DOI ↗
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