English

Quantum groups as hidden symmetries of quantum impurities

Quantum Gases 2018-12-26 v1 Mesoscale and Nanoscale Physics Other Condensed Matter Mathematical Physics math.MP Quantum Physics

Abstract

We present an approach to interacting quantum many-body systems based on the notion of quantum groups, also known as qq-deformed Lie algebras. In particular, we show that if the symmetry of a free quantum particle corresponds to a Lie group GG, in the presence of a many-body environment this particle can be described by a deformed group, GqG_q. Crucially, the single deformation parameter, qq, contains all the information about the many-particle interactions in the system. We exemplify our approach by considering a quantum rotor interacting with a bath of bosons, and demonstrate that extracting the value of qq from closed-form solutions in the perturbative regime allows one to predict the behavior of the system for arbitrary values of the impurity-bath coupling strength, in good agreement with non-perturbative calculations. Furthermore, the value of the deformation parameter allows to predict at which coupling strengths rotor-bath interactions result in a formation of a stable quasiparticle. The approach based on quantum groups does not only allow for a drastic simplification of impurity problems, but also provides valuable insights into hidden symmetries of interacting many-particle systems.

Keywords

Cite

@article{arxiv.1809.00222,
  title  = {Quantum groups as hidden symmetries of quantum impurities},
  author = {Enderalp Yakaboylu and Mikhail Shkolnikov and Mikhail Lemeshko},
  journal= {arXiv preprint arXiv:1809.00222},
  year   = {2018}
}

Comments

5 pages, 2 figures