Litcius/Paper detail

Quantum Efficiency of Single Dibenzoterrylene Molecules in <i>p</i>-Dichlorobenzene at Cryogenic Temperatures

Mohammad Musavinezhad, Alexey Shkarin, Dominik Rattenbacher, Jan Renger, Tobias Utikal, Stephan Götzinger, Vahid Sandoghdar

2023The Journal of Physical Chemistry B10 citationsDOIOpen Access PDF

Abstract

-dichlorobenzene at cryogenic temperatures. To achieve this, we combine two distinct methods based on the maximal photon emission and on the power required to saturate the zero-phonon line to compensate for uncertainties in some key system parameters. We find that the outcomes of the two approaches are in good agreement for reasonable values of the parameters involved, reporting a large fraction of molecules with QE values above 50%, with some exceeding 70%. Furthermore, we observe no correlation between the observed lower bound on the QE and the lifetime of the molecule, suggesting that most of the molecules have a QE exceeding the established lower bound. This confirms the suitability of DBT for quantum optics experiments. In light of previous reports of low QE values at ambient conditions, our results hint at the possibility of a strong temperature dependence of the QE.

Topics & Concepts

MoleculePhotonQuantum efficiencyQuantumDichlorobenzeneAtomic physicsPhysicsChemistryMaterials scienceOpticsQuantum mechanicsOrganic chemistryQuantum Information and CryptographyPhotorefractive and Nonlinear OpticsQuantum optics and atomic interactions