English

Resonance fluorescence from an atomic-quantum-memory compatible single photon source based on GaAs droplet quantum dots

Mesoscale and Nanoscale Physics 2018-07-17 v1

Abstract

Single photon sources, which are compatible with quantum memories are an important component of quantum networks. In this article, we show optical investigations on isolated GaAs/Al0.25_{0.25}Ga0.75_{0.75}As quantum dots grown via droplet epitaxy, which emit single photons on resonance with the Rb-87-D2_2 line (780 nm). Under continuous wave resonant excitation conditions, we observe bright, clean and narrowband resonance fluorescence emission from such a droplet quantum dot. Furthermore, the second-order correlation measurement clearly demonstrates the single photon emission from this resonantly driven transition. Spectrally resolved resonance fluorescence of a similar quantum dot yields a linewidth as narrow as 660 MHz (2.7 μeV 2.7~\mu eV ), which corresponds to a coherence time of 0.482 ns. The observed linewidth is the smallest reported so far for strain free GaAs quantum dots grown via the droplet method. We believe that this single photon source can be a prime candidate for applications in optical quantum networks.

Keywords

Cite

@article{arxiv.1806.10520,
  title  = {Resonance fluorescence from an atomic-quantum-memory compatible single photon source based on GaAs droplet quantum dots},
  author = {Laxmi Narayan Tripathi and Yu-Ming He and Lukasz Dusanowski and Piotr Andrzej Wronski and Chao-Yang Lu and Christian Schneider and Sven Hoefling},
  journal= {arXiv preprint arXiv:1806.10520},
  year   = {2018}
}

Comments

11 pages

R2 v1 2026-06-23T02:43:41.849Z