English

Quadrature coherence scale driven fast decoherence of bosonic quantum field states

Quantum Physics 2020-03-13 v2

Abstract

We introduce, for each state of a bosonic quantum field, its quadrature coherence scale (QCS), a measure of the range of its quadrature coherences. Under coupling to a thermal bath, the purity and QCS are shown to decrease on a time scale inversely proportional to the QCS squared. The states most fragile to decoherence are therefore those with quadrature coherences far from the diagonal. We further show a large QCS is difficult to measure since it induces small scale variations in the state's Wigner function. These two observations imply a large QCS constitutes a mark of "macroscopic coherence". Finally, we link the QCS to optical classicality: optical classical states have a small QCS and a large QCS implies strong optical nonclassicality.

Keywords

Cite

@article{arxiv.1909.05025,
  title  = {Quadrature coherence scale driven fast decoherence of bosonic quantum field states},
  author = {Anaelle Hertz and Stephan De Bièvre},
  journal= {arXiv preprint arXiv:1909.05025},
  year   = {2020}
}

Comments

12 pages, 5 figures. New version to match the published version. Minor errors were corrected