Hybrid State Engineering of Phase-Change Metasurface for All-Optical Cryptography

  • Choi, Chulsoo; 
  • Mun, Sang-Eun; 
  • Sung, Jangwoon; 
  • Choi, Kyunghee; 
  • Lee, Seung-Yeol; 
  • 외 1명
Citations

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82
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SCOPUS

85

초록

Chalcogenide material Ge2Sb2Te5(GST) has bistable phases, the so-called amorphous and crystalline phases that exhibit large refractive index contrast. It can be reversibly switched within a nanosecond time scale through applying thermal bias, especially optical or electrical pulse signals. Recently, GST has been exploited as an ingredient of all-optical dynamic metasurfaces, thanks to its ultrafast and efficient switching functionality. However, most of these devices provide only two-level switching functionality and this limitation hinders their application to diverse all-optical systems. In this paper, the method to expand switching functionality of GST metasurfaces to three level through engineering thermo-optically creatable hybrid state that is co-existing state of amorphous and crystalline GST-based meta-atoms is proposed. Furthermore, the novel hologram technique is introduced for providing the visual information that is only recognizable in the hybrid state GST metasurface. Thanks to thermo-optical complexity to make the hybrid state, the metasurface allows the realization of highly secured visual cryptography architecture without the complex optical setup. The phase-change metasurface based on multi-physical design has significant potential for applications such as all-optical image encryption, security, and anti-counterfeiting.

키워드

Ge2Sb2Te5; holography; metasurface; optical cryptography; phase-change material; ENCRYPTION SCHEME; AMPLITUDE; STORAGE
제목
Hybrid State Engineering of Phase-Change Metasurface for All-Optical Cryptography
저자
Choi, Chulsoo; Mun, Sang-Eun; Sung, Jangwoon; Choi, Kyunghee; Lee, Seung-Yeol; Lee, Byoungho
DOI
10.1002/adfm.202007210
발행일
2021-01
유형
Article
저널명
Advanced Functional Materials
권
31
호
4