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Voltage-controlled holography mediated with the metal ions sandwiched in TiO2/FTO electrodes
Combining multiple physical fields to achieve on-demand signal conversion is essential. Optical manipulation based on holography, especially electric field-driven holography, can promote efficient information processing. However, there is a lack of a platform that can effectively connect optical recording/reading with electric field.
Robust Carbon‐Dot Optical Disks for Orthogonal Amplitude‐Polarization Encryption Storage
Conflict of Interest The authors declare no conflict of interest. Supporting Information Filename Description lpor202401231-sup-0001-SuppMat.docx6.7 MB Supporting Information lpor202401231-sup-0002-Video1.mp421.2 MB Supplemental Video 1 lpor202401231-sup-0003-Video2.mp439.2 MB Supplemental Video 2 References 1, , , , ACS Nano 2020, 14, 14417. 2, , , , , , , , , , Science 2022, 376, eabj9979. 3, , , , , , , , Opt. Express 2019, 27, 11991. 4, , , , , Opt. Express 2010, 18, 7827. 5, , , , , Opt.
Semi-spontaneous temporal evolution of relief/fluorescence hybrid gratings for holographic encryption
Holographic systems can reconstruct the entire wavefront of light which are developed as an excellent platform of information encryption. Although holography has utilized multiple modulation dimensions, little attention is given to its combination with fluorescence emitting. Herein, we propose a semi-spontaneous time-dependent encryption strategy of hybrid holographic fringes with surface relief and fluorescent emission mediated by a plasmonic polymer doped with fluorescent dyes.
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