Prediction of molecular single-photon emitters: A materials-modeling approach
Journal article, 2026

Interfacing light with quantum systems is an integral part of quantum technology, with the most essential building block being single-photon emitters. Although various platforms exist, each with its individual strengths, molecular emitters boast a unique advantage-namely, the flexibility to tailor their design to fit the requirements of a specific task. However, the characteristics of the vast space of possible molecular configurations are challenging to understand and explore. Here, we present a theoretical and computational framework to initiate exploration of this vast potential by integrating database analysis with microscopic predictions. Using a model system of dibenzoterrylene in an anthracene host as benchmark, our approach identifies promising new candidates, among them a chiral molecular emitter. Future extensions of our approach integrated with machine learning routines hold the promise of ultimately unlocking the full potential of molecular quantum light-matter interfaces.

Author

Erik Karlsson Öhman

Chalmers, Physics, Condensed Matter and Materials Theory

Daqing Wang

University of Bonn

Richard Matthias Geilhufe

Chalmers, Physics, Condensed Matter and Materials Theory

Christian Schäfer

Chalmers, Physics, Condensed Matter and Materials Theory

PHYSICAL REVIEW RESEARCH

2643-1564 (eISSN)

Vol. 8 1 013329

Ultrafast Thermodynamics

Royal Physiographic Society of Lund (Horisont), 2024-03-01 -- 2025-12-31.

Stiftelsen Olle Engkvist Byggmästare (229-0443), 2024-03-01 -- 2027-02-28.

Interaction of chiral phonons and spin

Swedish Research Council (VR) (2022-03350), 2023-01-01 -- 2026-12-31.

Strong-Coupling for Optimal Plasmon-Catalysis

European Commission (EC) (EC/HE/101065117), 2023-01-12 -- 2025-01-11.

Transient chiral-induced magnetic effects

Knut and Alice Wallenberg Foundation (2023.0087), 2024-07-01 -- 2029-06-30.

Subject Categories (SSIF 2025)

Theoretical Chemistry

Condensed Matter Physics

Other Physics Topics

Areas of Advance

Nanoscience and Nanotechnology

DOI

10.1103/11bh-ywcc

Related datasets

Prediction of Molecular Single-Photon Emitters: A Materials-Modelling Approach [dataset]

URI: https://doi.org/10.1103/11bh-ywc

More information

Latest update

4/9/2026 1