English

Properties of nano-graphite ribbons with zigzag edges -- Difference between odd and even legs --

Mesoscale and Nanoscale Physics 2009-11-13 v1

Abstract

Persistent currents and transport properties are investigated for the nano-graphite ribbons with zigzag shaped edges with paying attention to system length LL dependence. It is found that both the persistent current in the isolated ring and the conductance of the system connected to the perfect leads show the remarkable LL dependences. In addition, the dependences for the systems with odd legs and those with even legs are different from each other. On the persistent current, the amplitude for the cases with odd legs shows power-low behavior as LNL^{-N} with NN being the number of legs, whereas the maximum of it decreases exponentially for the cases with even legs. The conductance per one spin normalized by e2/he^2/h behaves as follows. In the even legs cases, it decays as L2L^{-2}, whereas it reaches to unity for LL \to \infty in the odd legs cases. Thus, the material is shown to have a remarkable property that there is the qualitative difference between the systems with odd legs and those with even legs even in the absence of the electron-electron interaction.

Keywords

Cite

@article{arxiv.0807.3999,
  title  = {Properties of nano-graphite ribbons with zigzag edges -- Difference between odd and even legs --},
  author = {Hideo Yoshioka and Satomi Higashibata},
  journal= {arXiv preprint arXiv:0807.3999},
  year   = {2009}
}

Comments

4 pagaes, 8 figures, LT25 conference proceeding, accepted for publication in Journal of Physics: Conference Series