English

Spectral statistics in disordered metals: a trajectories approach

Mesoscale and Nanoscale Physics 2009-10-31 v1

Abstract

We show that the perturbative expansion of the two-level correlation function, R(ω)R(\omega), in disordered conductors can be understood semiclassically in terms of self-intersecting particle trajectories. This requires the extension of the standard diagonal approximation to include pairs of paths which are non-identical but have almost identical action. The number of diagrams thus produced is much smaller than in a standard field-theoretical approach. We show that such a simplification occurs because R(ω)R(\omega) has a natural representation as the second derivative of free energy F(ω)F(\omega). We calculate R(ω)R(\omega) to 3-loop order, and verify a one-parameter scaling hypothesis for it in 2d. We discuss the possibility of applying our ``weak diagonal approximation'' to generic chaotic systems.

Keywords

Cite

@article{arxiv.cond-mat/9801229,
  title  = {Spectral statistics in disordered metals: a trajectories approach},
  author = {Robert A. Smith and Igor V. Lerner and Boris L. Altshuler},
  journal= {arXiv preprint arXiv:cond-mat/9801229},
  year   = {2009}
}

Comments

9 pages in REVTeX two-column format including 4 figures; submitted to Phys.Rev.B

R2 v1 2026-07-22T12:01:52.442Z