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Abstracts
Interface states of all-metallic carbon nanotube quantum dots and superlattices are studied within a tight-binding model. We focus on achiral systems made by connecting armchair (n,n) and zigzag (2n,0) tubes with a full ring of n pentagon-heptagon topological defects. We show that the coupling between interface states, which arise from the topological defects, reflects the existence of the Friedel oscillations in the (n,n) tube, with an unusually large decay exponent. We expect this interaction to be important for the understanding of other physical properties, such as selective dot growth, magnetic interaction through carbon tubes or optical spectroscopy of interface states.
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Journal
Year
Volume
Issue
Pages
1085-1091
Physical description
Dates
published
2008-11
received
2008-06-07
Contributors
author
- Departamento de Física Aplicada UCLM, 45071 Toledo, Spain
author
- Departamento de Física Aplicada UCLM, 45071 Toledo, Spain
author
- Centro Mixto CSIC-UPV/EHU, 20080 Donostia, Spain
author
- Instytut Fizyki UMK, Grudziądzka 5, 87-100 Toruń, Poland
author
- Instytut Fizyki UMK, Grudziądzka 5, 87-100 Toruń, Poland
References
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Document Type
Publication order reference
Identifiers
YADDA identifier
bwmeta1.element.bwnjournal-article-appv114n514kz