English

Cold atoms meet lattice gauge theory

Quantum Gases 2022-01-20 v1 Strongly Correlated Electrons High Energy Physics - Lattice Quantum Physics

Abstract

The central idea of this review is to consider quantum field theory models relevant for particle physics and replace the fermionic matter in these models by a bosonic one. This is mostly motivated by the fact that bosons are more ``accessible'' and easier to manipulate for experimentalists, but this ``substitution'' also leads to new physics and novel phenomena. It allows us to gain new information about among other things confinement and the dynamics of the deconfinement transition. We will thus consider bosons in dynamical lattices corresponding to the bosonic Schwinger or Z2_2 Bose-Hubbard models. Another central idea of this review concerns atomic simulators of paradigmatic models of particle physics theory such as the Creutz-Hubbard ladder, or Gross-Neveu-Wilson and Wilson-Hubbard models. Finally, we will briefly describe our efforts to design experimentally friendly simulators of these and other models relevant for particle physics.

Keywords

Cite

@article{arxiv.2106.03063,
  title  = {Cold atoms meet lattice gauge theory},
  author = {Monika Aidelsburger and Luca Barbiero and Alejandro Bermudez and Titas Chanda and Alexandre Dauphin and Daniel González-Cuadra and Przemysław R. Grzybowski and Simon Hands and Fred Jendrzejewski and Johannes Jünemann and Gediminas Juzeliunas and Valentin Kasper and Angelo Piga and Shi-Ju Ran and Matteo Rizzi and Gérman Sierra and Luca Tagliacozzo and Emanuele Tirrito and Torsten V. Zache and Jakub Zakrzewski and Erez Zohar and Maciej Lewenstein},
  journal= {arXiv preprint arXiv:2106.03063},
  year   = {2022}
}

Comments

12pp. review style

R2 v1 2026-06-24T02:52:44.463Z