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- W3127445802 startingPage "114670" @default.
- W3127445802 abstract "Localized and intense field confinement near metallic plasmonic nanostructures has enabled a wealth of breakthrough applications in state-of-the-art sensing and single-molecule detection. Herein, using the quantum mechanical calculations, we investigate the optical and plasmonic properties of a cube-shaped nanoparticle cluster made of eight identical metal nanoparticles. We demonstrate that the absorption profile, response charge density and field enhancements are exquisitely sensitive to the interparticle gap distance. Among other insights, we reveal the emergence of charge-transfer plasmons (CTPs) and electron tunnelling mediated plasmons (ETMPs). Our quantum calculations yield quantitative access to the field enhancements and may help in the design of new optical devices having close-packed nanoparticle clusters as building blocks." @default.
- W3127445802 created "2021-02-15" @default.
- W3127445802 creator A5024623926 @default.
- W3127445802 date "2021-05-01" @default.
- W3127445802 modified "2023-09-30" @default.
- W3127445802 title "Nanoscale field enhancement of a close-packed nanoparticle cluster" @default.
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- W3127445802 doi "https://doi.org/10.1016/j.physe.2021.114670" @default.
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