English

Enhancing the efficiency of quantum-dot-based single-photon source designs by suppressing background emission using concentric rings

Optics 2026-05-20 v3 Quantum Physics

Abstract

In this paper, we theoretically demonstrate that a few-period circular Bragg reflector consisting of concentric rings placed around an infinite nanowire with an embedded quantum dot can increase the fraction of radiative emission into the fundamental HE11\mathrm{HE}_{11} mode (β=ΓHE11/ΓTotal\beta=\Gamma_{\rm HE_{11}}/\Gamma_{\rm Total}) up to 0.999 due to enhanced suppression of the emission into radiation modes caused by a photonic bandgap effect. We then apply this strategy in the practically relevant case of the finite-sized single-photon source based on tapered nanowires and demonstrate that the collection efficiency can be improved. Additionally, we also show the beneficial effects of placing optimized rings around the micropillar single-photon source.

Cite

@article{arxiv.2307.03619,
  title  = {Enhancing the efficiency of quantum-dot-based single-photon source designs by suppressing background emission using concentric rings},
  author = {Martin Arentoft Jacobsen and Luca Vannucci and Julien Claudon and Jean-Michel Gérard and Niels Gregersen},
  journal= {arXiv preprint arXiv:2307.03619},
  year   = {2026}
}
R2 v1 2026-06-28T11:24:36.031Z