English

Mott-glass phase of a one-dimensional quantum fluid with long-range interactions

Quantum Gases 2023-12-14 v3

Abstract

We investigate the ground-state properties of quantum particles interacting via a long-range repulsive potential Vσ(x)1/x1+σ{\cal V}_\sigma(x)\sim 1/|x|^{1+\sigma} (1<σ-1<\sigma) or Vσ(x)x1σ{\cal V}_\sigma(x)\sim -|x|^{-1-\sigma} (2σ<1-2\leq \sigma <-1) that interpolates between the Coulomb potential V0(x){\cal V}_0(x) and the linearly confining potential V2(x){\cal V}_{-2}(x) of the Schwinger model. In the absence of disorder the ground state is a Wigner crystal when σ0\sigma\leq 0. Using bosonization and the nonperturbative functional renormalization group we show that any amount of disorder suppresses the Wigner crystallization when 3/2<σ0-3/2<\sigma\leq 0; the ground state is then a Mott glass, i.e., a state that has a vanishing compressibility and a gapless optical conductivity. For σ<3/2\sigma<-3/2 the ground state remains a Wigner crystal.

Keywords

Cite

@article{arxiv.2007.02993,
  title  = {Mott-glass phase of a one-dimensional quantum fluid with long-range interactions},
  author = {Romain Daviet and Nicolas Dupuis},
  journal= {arXiv preprint arXiv:2007.02993},
  year   = {2023}
}

Comments

v2) 6+10 pages, 3+1 figures; v3) Supplemental Material updated