A novel approach towards robust construction of physical colors on lithium niobate crystal
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Abstract
Controlling the construction of physical colors on the surfaces of transparent dielectric crystals is crucial for surface coloration and anti-counterfeiting applications. In this study, we present a novel approach to creating stable physical colors on the surface of lithium niobate crystals by combining gold ion implantation with laser direct writing technologies. The interaction between the laser, the implanted gold nanoparticles, and the crystal lattice induces permanent, localized modifications on the crystal surface. By fine-tuning the laser direct writing parameters, we reshaped the gold nanoparticles into spheres of varying sizes on the crystal surface, resulting in the display of red, green, blue, and…
Citation impact
65
total citations
- FWCI
- 63.56
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- 100%
- References
- 43
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Authors
9Topics & keywords
Topics
Keywords
- Lithium niobate
- Materials science
- Lithium (medication)
- Crystal (programming language)
- Optics
- Optoelectronics
- Computer science
- Physics
UN Sustainable Development Goals
- Sustainable cities and communities
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