English

Renormalization-Group Approach to a Three-Legs Fermionic Ladder

Condensed Matter 2009-10-28 v3

Abstract

We study the spin and charge phase diagram of a three-legs ladder (at zero temperature) as a function of fermion density and of transverse single-particle hopping by means of a Renormalization-Group analysis rigorously controlled in the weak-coupling limit. Periodic boundary conditions in the direction transverse to the ladder produce frustrated magnetic excitations yielding a spin-gapped phase in a large region about and at half filling. Spin correlations are instead enhanced when open transverse boundary conditions are considered, yielding an ungapped phase in a wide region about half filling (as observed in the Srn1_{n-1}Cun+1_{n+1}O2n_{2n} stripes compounds) and at half filling down to a critical value of the transverse hopping tt_{\perp}. At that critical value, the system undergoes a Mott transition at half filling by decreasing tt_{\perp}.

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Cite

@article{arxiv.cond-mat/9509145,
  title  = {Renormalization-Group Approach to a Three-Legs Fermionic Ladder},
  author = {Enrico Arrigoni},
  journal= {arXiv preprint arXiv:cond-mat/9509145},
  year   = {2009}
}

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Final version

R2 v1 2026-07-22T11:50:49.462Z