English

Dynamic Generation of Light States with Discrete Symmetries

Quantum Physics 2018-01-10 v2

Abstract

A dynamic procedure is established within the generalised Tavis-Cummings model to generate light states with discrete point symmetries, given by the cyclic group Cn{\cal C}_n. We consider arbitrary dipolar coupling strengths of the atoms with a one-mode electromagnetic field in a cavity. The method uses mainly the matter-field entanglement properties of the system, which can be extended to any number of 33-level atoms. An initial state constituted by the superposition of two states with definite total excitation numbers, ψM1\vert \psi \rangle_{M_1}, and ψM2\vert \psi \rangle_{M_2}, is considered. It can be generated by the proper selection of the time-of-flight of an atom passing through the cavity. We demonstrate that the resulting Husimi function of the light is invariant under cyclic point transformations of order n=M1M2n=\vert M_1-M_2\vert.

Keywords

Cite

@article{arxiv.1701.07816,
  title  = {Dynamic Generation of Light States with Discrete Symmetries},
  author = {S. Cordero and E. Nahmad-Achar and O. Castaños and R. López-Peña},
  journal= {arXiv preprint arXiv:1701.07816},
  year   = {2018}
}

Comments

24 pages, 7 figures