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Please use this identifier to cite or link to this item: https://elib.bsu.by/handle/123456789/265859
Title: Electro-absorption of silicene and bilayer graphene quantum dots
Authors: Abdelsalam, H.
Talaat, M.H.
Lukyanchuk, I.
Portnoi, M.E.
Saroka, V.A.
Keywords: ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика
Issue Date: 2016
Publisher: American Institute of Physics Inc.
Citation: J Appl Phys 2016;120(1).
Abstract: We study numerically the optical properties of low-buckled silicene and AB-stacked bilayer graphene quantum dots subjected to an external electric field, which is normal to their surface. Within the tight-binding model, the optical absorption is calculated for quantum dots, of triangular and hexagonal shapes, with zigzag and armchair edge terminations. We show that in triangular silicene clusters with zigzag edges a rich and widely tunable infrared absorption peak structure originates from transitions involving zero energy states. The edge of absorption in silicene quantum dots undergoes red shift in the external electric field for triangular clusters, whereas blue shift takes place for hexagonal ones. In small clusters of bilayer graphene with zigzag edges the edge of absorption undergoes blue/red shift for triangular/hexagonal geometry. In armchair clusters of silicene blue shift of the absorption edge takes place for both cluster shapes, while red shift is inherent for both shapes of the bilayer graphene quantum dots.
URI: https://elib.bsu.by/handle/123456789/265859
DOI: 10.1063/1.4955222
Scopus: 84978835983
Sponsorship: Horizon 2020 Framework Programme (H2020), 644076; Seventh Framework Programme (FP7), 316432,604391,607521,612285,612624.
Appears in Collections:Статьи НИУ «Институт ядерных проблем»

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