Electron-Electron Interactions and Topology in the Electronic Properties of Gated Graphene Nanoribbon Rings in Möbius and Cylindrical Configurations

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Date

2013

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Publisher

American Physical Society

Open Access Color

BRONZE

Green Open Access

Yes

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No
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Top 10%
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Top 10%
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Abstract

We present a theory of the electronic properties of gated graphene nanoribbon rings with zigzag edges in Möbius and cylindrical configurations. The finite width opens a gap and nontrivial topology of the Möbius ring leads to a single edge with edge states with an induced, effective gauge field, in analogy to topological insulators. The single zigzag edge leads to a shell of degenerate states at the Fermi level and a ferromagnetic (FM) ground state at half-filling, i.e., at charge neutrality, due to electron-electron interactions. For fractional fillings, both the magnetic moment and the energy gap are found to oscillate as a function of the shell filling. In cylindrical rings, the two edges lead to AF ground state at half-filling but FM ground state at fractional fillings.

Description

Keywords

Graphene, Electronic structure of graphene, Möbius, Cylindrical configurations, Cylindrical rings, Möbius, Cylindrical configurations, Electronic structure of graphene, Graphene, Cylindrical rings

Fields of Science

0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences

Citation

Güçlü, A.D., Grabowski, M., and Hawrylak, P. (2013). Electron-electron interactions and topology in the electronic properties of gated graphene nanoribbon rings in Möbius and cylindrical configurations. Physical Review B - Condensed Matter and Materials Physics, 87(3). doi:10.1103/PhysRevB.87.035435

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OpenCitations Citation Count
23

Source

Physical Review B - Condensed Matter and Materials Physics

Volume

87

Issue

3

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CrossRef : 11

Scopus : 27

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27

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26

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Page Views

998

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Downloads

515

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