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Infra-Red Active Dirac Plasmon Serie in Potassium Doped-Graphene (KC8) Nanoribbons Array on Al2O3 Substrate (CROSBI ID 311209)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Jakovac, Josip ; Marušić, Leonardo ; Andrade- Guevara, Denise ; Chacón-Torres, Julio C. ; Despoja, Vito Infra-Red Active Dirac Plasmon Serie in Potassium Doped-Graphene (KC8) Nanoribbons Array on Al2O3 Substrate // Materials, 14 (2021), 15; 4256, 11. doi: 10.3390/ma14154256

Podaci o odgovornosti

Jakovac, Josip ; Marušić, Leonardo ; Andrade- Guevara, Denise ; Chacón-Torres, Julio C. ; Despoja, Vito

engleski

Infra-Red Active Dirac Plasmon Serie in Potassium Doped-Graphene (KC8) Nanoribbons Array on Al2O3 Substrate

A theoretical formulation of the electromagnetic response in graphene ribbons on dielectric substrate is derived in the framework of the ab initio method. The formulation is applied to calculate the electromagnetic energy absorption in an array of potassium-doped graphene nanoribbons (KC8-NR) deposited on a dielectric Al2O3 substrate. It is demonstrated that the replacement of the flat KC8 by an array of KC8-NR transforms the Drude tail in the absorption spectra into a series of infrared-active Dirac plasmon resonances. It is also shown that the series of Dirac plasmon resonances, when unfolded across the extended Brillouin zones, resembles the Dirac plasmon. The Dirac plasmon resonances’ band structure, within the first Brillouin zone, is calculated. Finally, an excellent agreement between the theoretical absorption and recent experimental results for differential transmission through graphene on an SiO2/Si surface is presented. The theoretically predicted micrometer graphene nanoribbons intercalation compound (GNRIC) in a stage-I-like KC8 is confirmed to be synthesized for Dirac plasmon resonances

graphene ribbons ; 2D plasmons ; photonics ; intercalated graphene

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Podaci o izdanju

14 (15)

2021.

4256

11

objavljeno

1996-1944

10.3390/ma14154256

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Fizika

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