English

Indistinguishable and efficient single photons from a quantum dot in a planar nanobeam waveguide

Quantum Physics 2017-10-25 v3 Mesoscale and Nanoscale Physics Optics

Abstract

We demonstrate a high-purity source of indistinguishable single photons using a quantum dot embedded in a nanophotonic waveguide. The source features a near-unity internal coupling efficiency and the collected photons are efficiently coupled off-chip by implementing a taper that adiabatically couples the photons to an optical fiber. By quasi-resonant excitation of the quantum dot, we measure a single-photon purity larger than 99.4% and a photon indistinguishability of up to 94+-1% by using p-shell excitation combined with spectral filtering to reduce photon jitter. A temperature-dependent study allows pinpointing the residual decoherence processes notably the effect of phonon broadening. Strict resonant excitation is implemented as well as another mean of suppressing photon jitter, and the additional complexity of suppressing the excitation laser source is addressed. The study opens a clear pathway towards the long-standing goal of a fully deterministic source of indistinguishable photons, which is integrated on a planar photonic chip.

Keywords

Cite

@article{arxiv.1701.08131,
  title  = {Indistinguishable and efficient single photons from a quantum dot in a planar nanobeam waveguide},
  author = {Gabija Kiršanskė and Henri Thyrrestrup and Raphaël S. Daveau and Chris L. Dreeßen and Tommaso Pregnolato and Leonardo Midolo and Petru Tighineanu and Alisa Javadi and Søren Stobbe and Rüdiger Schott and Arne Ludwig and Andreas D. Wieck and Suk In Park and Jin D. Song and Andreas V. Kuhlmann and Immo Söllner and Matthias C. Löbl and Richard J. Warburton and Peter Lodahl},
  journal= {arXiv preprint arXiv:1701.08131},
  year   = {2017}
}

Comments

12 pages (10 figures)

R2 v1 2026-06-22T18:02:40.016Z