English

Negative effective mass transition and anomalous transport in power-law hopping bands

Mesoscale and Nanoscale Physics 2009-05-02 v1

Abstract

We study the stability of spinless Fermions with power law hopping HijijαH_{ij} \propto |i - j|^{-\alpha}. It is shown that at precisely αc=2\alpha_c =2, the dispersive inflection point coalesces with the band minimum and the charge carriers exhibit a transition into negative effective mass regime, mα<0m_\alpha^* < 0 characterized by retarded transport in the presence of an electric field. Moreover, bands with α<2\alpha < 2 must be accompanied by counter-carriers with mα>0m_\alpha^* > 0, having a positive band curvature, thus stabilizing the system in order to maintain equilibrium conditions and a proper electrical response. We further examine the semi-classical transport and response properties, finding an infrared divergent conductivity for 1/r hopping(α=1\alpha =1). The analysis is generalized to regular lattices in dimensions dd = 1, 2, and 3.

Keywords

Cite

@article{arxiv.0901.3420,
  title  = {Negative effective mass transition and anomalous transport in power-law hopping bands},
  author = {Shimul Akhanjee},
  journal= {arXiv preprint arXiv:0901.3420},
  year   = {2009}
}

Comments

6 pages. 2 figures