English

Site-disorder driven superconductor-insulator transition: A dynamical mean field study

Strongly Correlated Electrons 2014-03-05 v1 Superconductivity

Abstract

We investigate the effect of site-disorder on the superconducting (SC) state in the attractive Hubbard model within the framework of dynamical mean field theory. For a fixed interaction strength (UU), the SC order parameter (OP) decreases monotonically with increasing disorder (xx), while the single-particle spectral gap (SG) decreases for small xx, reaches a minimum and keeps increasing for larger xx. Thus, the system remains gapped beyond the destruction of the superconducting state, indicating a disorder-driven superconductor-insulator transition. We investigate this transition in depth considering the effects of weak and strong disorder for a range of interaction strengths. In the clean case, the order-parameter is known to increase monotonically with increasing interaction, saturating at a finite value asymptotically for UU\rightarrow \infty. The presence of disorder results in destruction of superconductivity at large UU, thus drastically modifying the clean case behaviour. A physical understanding of our findings is obtained by invoking particle-hole asymmetry and the probability distributions of the order parameter and spectral gap.

Keywords

Cite

@article{arxiv.1309.7224,
  title  = {Site-disorder driven superconductor-insulator transition: A dynamical mean field study},
  author = {Naushad Ahmad Kamar and N. S. Vidhyadhiraja},
  journal= {arXiv preprint arXiv:1309.7224},
  year   = {2014}
}

Comments

15 pages, 9 figures

R2 v1 2026-06-22T01:35:28.183Z