7 papers
Resonant Excitation Induced Vibronic Mollow Triplets
Devashish Pandey, Corne Koks, Martijn Wubs +2
The Mollow triplet is the definitive spectral signature of an optically dressed quantum emitter. We predict that for emitters coupled to localized phonons, this signature is not co…
Creation and Microscopic Origins of Single-Photon Emitters in Transition Metal Dichalcogenides and Hexagonal Boron Nitride
Amedeo Carbone, Diane-Pernille Bendixen-Fernex de Mongex, Arkady V. Krasheninnikov +6
We highlight recent advances in the controlled creation of single-photon emitters in van der Waals materials and in the understanding of their atomistic origin. We focus on quantum…
Two-dimensional materials as ideal substrates for molecular quantum emitters
Haiyuan Wang, Nicolas Stenger, Peder Lyngby +3
The generation and manipulation of non-classical states of light is central to quantum technologies. Color centers in insulators have been extensively studied for single-photon gen…
Systematic investigation of the generation of luminescent emitters in hBN via irradiation engineering
Pooja C. Sindhuraj, José M. Caridad, Corné Koks +9
Hexagonal boron nitride (hBN), a two-dimensional (2D) material, garners interest for hosting bright quantum emitters at room temperature. A great variety of fabrication processes h…
Quantifying the creation of negatively charged boron vacancies in He-ion irradiated hexagonal boron nitride
Amedeo Carbone, Ilia D. Breev, Johannes Figueiredo +10
Hexagonal boron nitride (hBN) hosts luminescent defects possessing spin qualities compatible with quantum sensing protocols at room temperature. Vacancies, in particular, are readi…
Collective single-photon emission and energy transfer in thin-layer dielectric and plasmonic systems
Mads A. Jørgensen, Devashish Pandey, Ehsan Amooghorban +3
We study the collective photon decay of multiple quantum emitters embedded in a thin high-index dielectric layer such as hexagonal boron nitride (hBN), with and without a metal sub…