English

Periodic squeezing in a polariton Josephson junction

Quantum Physics 2017-11-13 v2

Abstract

The use of a Kerr nonlinearity to generate squeezed light is a well-known way to surpass the quantum noise limit along a given field quadrature. Nevertheless, in the most common regime of weak nonlinearity, a single Kerr resonator is unable to provide the proper interrelation between the field amplitude and squeezing required to induce a sizable deviation from Poissonian statistics. We demonstrate experimentally that weakly coupled bosonic modes allow exploration of the interplay between squeezing and displacement, which can give rise to strong deviations from the Poissonian statistics. In particular, we report on the periodic bunching in a Josephson junction formed by two coupled exciton-polariton modes. Quantum modeling traces the bunching back to the presence of quadrature squeezing. Our results, linking the light statistics to squeezing, are a precursor to the study of nonclassical features in semiconductor microcavities and other weakly nonlinear bosonic systems.

Keywords

Cite

@article{arxiv.1612.06906,
  title  = {Periodic squeezing in a polariton Josephson junction},
  author = {Albert F. Adiyatullin and Mitchell D. Anderson and Hugo Flayac and Marcia T. Portella-Oberli and Fauzia Jabeen and Clauderic Ouellet-Plamondon and Gregory C. Sallen and Benoit Deveaud},
  journal= {arXiv preprint arXiv:1612.06906},
  year   = {2017}
}

Comments

6 pages, 4 figures

R2 v1 2026-06-22T17:30:10.326Z