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April 22, 2026Applied Physics Reviews0 citationsOpen Access

Organic molecules as single-photon sources

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ASA. ShkarinSGS. Götzinger

Key Points

  • The aim is to review advancements in organic single-photon sources made from polycyclic hydrocarbons.
  • Overview of single-photon sources based on single molecules.
  • Discussion of sample preparation and emitter parameters.
  • Examination of light extraction strategies.
  • Polycyclic hydrocarbons exhibit high photon rates and photostability.
  • These molecules show negligible dephasing at cryogenic temperatures.
  • Current challenges and potential solutions in single-photon source development are identified.

Abstract

The development of single-photon sources has been nothing but rapid in recent years, with quantum emitter-based systems showing especially impressive progress. In this paper, we give an overview of the developments in single-photon sources based on single molecules. We will introduce polycyclic hydrocarbons as the most commonly used emitter systems for the realization of an organic solid-state single-photon source. At cryogenic temperatures, this special class of fluorescent molecules demonstrates remarkable optical properties such as negligible dephasing, indefinite photostability, and high photon rates, which make them attractive as fundamental building blocks in emerging quantum technologies. To better understand the general properties and limitations of these molecules, we discuss sample preparation and relevant emitter parameters such as absorption and emission spectra, lifetime, and dephasing. We will also give an overview of light extraction strategies as a crucial part of a single-photon source. Finally, we conclude with a look into the future, displaying current challenges and possible solutions.

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Cite This Study

Shkarin et al. (2026) studied this question.

synapsesocial.com/papers/69e864c46e0dea528dde976ehttps://doi.org/10.1063/5.0304253
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