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Dopant-Induced Plasmon Decay in Graphene (CROSBI ID 262703)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Novko, Dino Dopant-Induced Plasmon Decay in Graphene // Nano letters, 17 (2017), 11; 6991-6996. doi: 10.1021/acs.nanolett.7b03553

Podaci o odgovornosti

Novko, Dino

engleski

Dopant-Induced Plasmon Decay in Graphene

Chemically doped graphene could support plasmon excitations up to telecommunication or even visible frequencies. Apart from that, the presence of dopant may influence electron scattering mechanisms in graphene and thus impact the plasmon decay rate. Here I study from first principles these effects in single-layer and bilayer graphene doped with various alkali and alkaline earth metals. I find new dopant-activated damping channels: loss due to out-of-plane graphene and in-plane dopant vibrations, and electron transitions between graphene and dopant states. The latter excitations interact with the graphene plasmon, and together they form a new hybrid mode. The study points out a strong dependence of these features on the type of dopants and the number of layers, which could be used as a tuning mechanism in future graphene-based plasmonic devices.

electron-phonon coupling, plasmons, doped graphene

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Podaci o izdanju

17 (11)

2017.

6991-6996

objavljeno

1530-6984

10.1021/acs.nanolett.7b03553

Povezanost rada

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