English

Phase-stable source of high-quality three-photon polarization entanglement by cascaded downconversion

Quantum Physics 2022-06-15 v1

Abstract

Stable sources of entangled photons are important requirements for quantum communications. In recent years, cascaded downconversion has been demonstrated as an effective method of directly producing three-photon entanglement. However, to produce polarization entanglement these sources have until now relied on intricate active phase stabilization schemes, thus limiting their robustness and usability. In this work, we present a completely phase-stable source of three-photon entanglement in the polarization degree of freedom. With this source, which is based on a cascade of two pair sources based on Sagnac configurations, we produce states with over 96\% fidelity with an ideal GHZ state. Moreover, we demonstrate the stability of the source over several days without any ongoing optimization. We expect this source to be a useful tool for applications requiring multiphoton entanglement, such as quantum secret sharing and producing heralded entangled photon pairs.

Keywords

Cite

@article{arxiv.2108.08662,
  title  = {Phase-stable source of high-quality three-photon polarization entanglement by cascaded downconversion},
  author = {Zachary M. E. Chaisson and Patrick F. Poitras and Micaël Richard and Yannick Castonguay-Page and Paul-Henry Glinel and Véronique Landry and Deny R. Hamel},
  journal= {arXiv preprint arXiv:2108.08662},
  year   = {2022}
}

Comments

5 pages, 4 figures