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Quantized edge modes in atomic-scale point contacts in graphene.
Kinikar, Amogh; Phanindra Sai, T; Bhattacharyya, Semonti; Agarwala, Adhip; Biswas, Tathagata; Sarker, Sanjoy K; Krishnamurthy, H R; Jain, Manish; Shenoy, Vijay B; Ghosh, Arindam.
Afiliação
  • Kinikar A; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Phanindra Sai T; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Bhattacharyya S; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Agarwala A; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Biswas T; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Sarker SK; Department of Physics, The University of Alabama, Tuscaloosa, Alabama 35487, USA.
  • Krishnamurthy HR; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Jain M; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Shenoy VB; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
  • Ghosh A; Department of Physics, Indian Institute of Science, Bengaluru 560 012, India.
Nat Nanotechnol ; 12(6): 564-568, 2017 07.
Article em En | MEDLINE | ID: mdl-28369047
The zigzag edges of single- or few-layer graphene are perfect one-dimensional conductors owing to a set of gapless states that are topologically protected against backscattering. Direct experimental evidence of these states has been limited so far to their local thermodynamic and magnetic properties, determined by the competing effects of edge topology and electron-electron interaction. However, experimental signatures of edge-bound electrical conduction have remained elusive, primarily due to the lack of graphitic nanostructures with low structural and/or chemical edge disorder. Here, we report the experimental detection of edge-mode electrical transport in suspended atomic-scale constrictions of single and multilayer graphene created during nanomechanical exfoliation of highly oriented pyrolytic graphite. The edge-mode transport leads to the observed quantization of conductance close to multiples of G0 = 2e2/h. At the same time, conductance plateaux at G0/2 and a split zero-bias anomaly in non-equilibrium transport suggest conduction via spin-polarized states in the presence of an electron-electron interaction.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nat Nanotechnol Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Índia País de publicação: Reino Unido

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Nat Nanotechnol Ano de publicação: 2017 Tipo de documento: Article País de afiliação: Índia País de publicação: Reino Unido