Selective photonic printing based on anisotropic Fabry-Perot resonators for dual-image holography and anti-counterfeiting

We present the photonic printing that can display different color images depending on the optical polarization of incident light. The dynamic selection among different images becomes possible by using anisotropic Fabry-Perot resonators that incorporate a layer of liquid crystal molecules aligned by...

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Veröffentlicht in:Optics express 2019-08, Vol.27 (17), p.24512-24523
Hauptverfasser: Lee, In-Ho, Li, Gang, Lee, Bo-Yeon, Kim, Se-Um, Lee, Byoungho, Oh, Sang-Hyun, Lee, Sin-Doo
Format: Artikel
Sprache:eng
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Zusammenfassung:We present the photonic printing that can display different color images depending on the optical polarization of incident light. The dynamic selection among different images becomes possible by using anisotropic Fabry-Perot resonators that incorporate a layer of liquid crystal molecules aligned by directional molecular registration (DMR) as polarization-dependent color pixels. Using the new device platform, we demonstrate a prototype of an anticounterfeiting label with inherent anti-replicability that results from the molecular-level origin of security images. In addition, this concept is extended to polarization-selective holography. Our molecular-level approach enables to develop a new class of security labels and holographic storage media.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.27.024512