Exploring plasmonic gradient metasurfaces for enhanced optical sensing in the visible spectrum
Huang Shih-Hsiu et al · Wiley · 2024
3-D near-field imaging of guided modes in nanophotonic waveguides
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+1/I
0) amplifies the change in optical response by maximizing the deflected beam’s intensity while minimizing specular reflection. Experimental validation attests to the PGMS’s consistent performance across diverse media and wavelengths, successfully overcoming challenges associated with oxidation issues. Furthermore, the incorporation of a normalization factor enhances the PGMS’s sensing performance and versatility for broadband optical sensing, accommodating variations in the refractive index. Particularly sensitive in green wavelengths, the PGMS demonstrates its potential in visible spectrum applications, such as biomedical diagnostics and environmental monitoring. This research not only addresses challenges posed by conventional sensors but also propels optical sensing technologies into a realm of heightened sensitivity and adaptability.
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APA 7
al, H. S. H. E. (2024). Exploring plasmonic gradient metasurfaces for enhanced optical sensing in the visible spectrum. https://doi.org/10.1515/nanoph-2023-0809
MLA
al, Huang Shih-Hsiu et. "Exploring plasmonic gradient metasurfaces for enhanced optical sensing in the visible spectrum." 2024. https://doi.org/10.1515/nanoph-2023-0809.
Chicago
al, Huang Shih-Hsiu et. 2024. "Exploring plasmonic gradient metasurfaces for enhanced optical sensing in the visible spectrum.". https://doi.org/10.1515/nanoph-2023-0809.
Harvard
al, H. S. H. E. 2024, Exploring plasmonic gradient metasurfaces for enhanced optical sensing in the visible spectrum, Wiley, available at: https://doi.org/10.1515/nanoph-2023-0809 [Accessed 28 Jun. 2026].
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- Título
- Exploring plasmonic gradient metasurfaces for enhanced optical sensing in the visible spectrum
- Autor / colaboradores
- Huang Shih-Hsiu et al
- Editorial
- Wiley
- Año de publicación
- 2024
- ISSN
- 2192-8614
- ISSN
- 2192-8614
- Idioma
- eng
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