English

Quantum phase transition of the sub-Ohmic rotor model

Strongly Correlated Electrons 2011-11-29 v2

Abstract

We investigate the behavior of an NN-component quantum rotor coupled to a bosonic dissipative bath having a sub-Ohmic spectral density J(ω)ωsJ(\omega) \propto \omega^s with s<1s<1. With increasing dissipation strength, this system undergoes a quantum phase transition from a delocalized phase to a localized phase. We determine the exact critical behavior of this transition in the large-NN limit. For 1>s>1/21>s>1/2, we find nontrivial critical behavior corresponding to an interacting renormalization group fixed point while we find mean-field behavior for s<1/2s<1/2. The results agree with those of the corresponding long-range interacting classical model. The quantum-to-classical mapping is therefore valid for the sub-Ohmic rotor model.

Keywords

Cite

@article{arxiv.1110.2470,
  title  = {Quantum phase transition of the sub-Ohmic rotor model},
  author = {Manal Al-Ali and Thomas Vojta},
  journal= {arXiv preprint arXiv:1110.2470},
  year   = {2011}
}

Comments

7 pages, final version as published