English

Unusual metallic phase in a chain of strongly interacting particles

Condensed Matter 2009-10-30 v1

Abstract

We consider a one-dimensional lattice model with the nearest-neighbor interaction V1V_1 and the next-nearest neighbor interaction V2V_2 with filling factor 1/2 at zero temperature. The particles are assumed to be spinless fermions or hard-core bosons. Using very simple assumptions we are able to predict the basic structure of the insulator-metal phase diagram for this model. Computations of the flux sensitivity support the main features of the proposed diagram and show that the system maintains metallic properties at arbitrarily large values of V1V_1 and V2V_2 along the line V12V2=γJV_1-2V_2=\gamma J, where JJ is the hopping amplitude, and γ1.2\gamma\approx1.2. We think that close to this line the system is a ``weak'' metal in a sense that the flux sensitivity decreases with the size of the system not exponentially but as 1/Lα1/L^\alpha with α>1\alpha>1.

Keywords

Cite

@article{arxiv.cond-mat/9708167,
  title  = {Unusual metallic phase in a chain of strongly interacting particles},
  author = {E. V. Tsiper and A. L. Efros},
  journal= {arXiv preprint arXiv:cond-mat/9708167},
  year   = {2009}
}

Comments

To appear in J. Phys. C; 9 revtex preprint pages + 4 ps figures, uuencoded