Single-photon generation: materials, techniques, and the Rydberg exciton frontier

Loading...
Thumbnail Image

Authors

Keni, Arya
Barua, Kinjol
Heshami, Khabat
Javadi, Alisa
Alaeian, Hadiseh

Journal Title

Journal ISSN

Volume Title

Publisher

Optica Publishing Group

Item Statistics

  • Total Views: 0
  • Total Downloads: 1
  • Views in the Last Month: 0

Abstract

Due to their quantum nature, single-photon emitters (SPE) generate individual photons in bursts or streams. They are paramount in emerging quantum technologies such as quantum key distribution, quantum repeaters, and measurement-based quantum computing. Many such systems have been reported in the last three decades, from rubidium atoms coupled to cavities to semiconductor quantum dots and color centers implanted in waveguides. This review article highlights different solid-state and atomic systems with on-demand and controlled single-photon generation. We discuss and compare the performance metrics, such as purity and indistinguishability, for these sources and evaluate their potential for different applications. Finally, a new potential single-photon source, based on the Rydberg exciton in solid-state metal oxide thin films, is introduced, where we discuss its promising features and unique advantages in fabricating quantum chips for quantum photonic applications.

Description

Citation

Arya Keni, Kinjol Barua, Khabat Heshami, Alisa Javadi, and Hadiseh Alaeian, "Single-photon generation: materials, techniques, and the Rydberg exciton frontier [Invited]," Opt. Mater. Express 15, 626-643 (2025)

Related file

https://opg.optica.org/ome/fulltext.cfm?uri=ome-15-4-626

Notes

© 2025 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreemen

Endorsement

Review

Supplemented By

Referenced By

Collection Detail

# of Isolates from RBM

# of Isolates from TV8