Reconfigurable Hologram Response to Liquid via the Femtosecond Laser Direct Writing of 3D Micropillars

Taoyong Li, Luqi Li, Lan Jiang, Peng Yi, Min Li, Songchang Li, Xibiao Li, Xiangyu Zhang, Andong Wang, Zhi Wang, Jiafang Li, Lingling Huang, Bing Han, Xiaowei Li*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

Reconfigurable and tunable holograms hold significant practical value in the fields of anti-counterfeiting, optical security, and information display due to their ability to reprogram holographic patterns and create variable visual effects. However, current encryption techniques face challenges in achieving rapid encryption/decryption and ensuring consistent methods. In this study, a method for producing a reconfigurable encryption hologram utilizing the deformation and recovery properties of micropillars in response to liquid is demonstrated. Micron-scale micropillars are fabricated using femtosecond laser two-photon polymerization. By exploiting the rapid deformation and recovery capabilities of micropillars with specific pitches and aspect ratios in response to liquids, micropillar structures and holograms are combined to construct reconfigurable holograms. The encrypted pattern information in the reconfigurable holograms is only readable following immersion in alcohol and laser irradiation. The proposed method offers a facile, reversible, reusable, and practical solution for information encryption, with significant potential in anti-counterfeiting and optical security.

Original languageEnglish
Article number2400612
JournalAdvanced Optical Materials
Volume12
Issue number29
DOIs
Publication statusPublished - 15 Oct 2024

Keywords

  • anti-counterfeiting
  • femtosecond laser
  • reconfigurable holograms
  • two-photon polymerization

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