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◆ Optical Materials Express2026-03-12· Materials science

Terahertz metasurface encryption based on phase change-controlled magnetic resonance quenching

Wenpeng Guo, Yu Wang, Chenxiang Liu, Jie Liu, Xingkai Che, Peng Tan, Li Li, Hao Tian

原始摘要(英文原文)· Original abstract
We present a terahertz encryption metasurface enabled by the phase-change material Ge 2 Sb 2 Te 5 (GST). A plasmon-induced transparency (PIT) response is formed by bright–dark mode coupling, and switching GST between amorphous and crystalline states modulates transmission by quenching the split-ring magnetic resonance. The resulting transmission contrast supports binary amplitude holography, allowing reversible switching between a non-informative output and a reconstructed holographic image. To enhance security, we integrate Shamir’s visual cryptography: the plaintext is recovered only by decoding and superposing two independent share images mapped to separate metasurfaces. Incorporating VO 2 adds a thermal access dimension for multi-level security.
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