most citedFast electrical modulation of strong near-field interactions between erbium emitters and graphene

29 citations · 69 across the 5 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall202029 cited

Fast electrical modulation of strong near-field interactions between erbium emitters and graphene

Daniel Cano, Alban Ferrier, Karuppasamy Soundarapandian +9

Combining the quantum optical properties of single-photon emitters with the strong near-field interactions available in nanophotonic and plasmonic systems is a powerful way of crea…

quant-ph2020

Molecule-based coherent light-spin interfaces for quantum information processing -- optical spin state polarization in a binuclear Europium complex

Kuppusamy Senthil Kumar, Diana Serrano, Aline M. Nonat +5

The success of the emerging field of solid-state optical quantum information processing (QIP) critically depends on the access to resonant optical materials. Rare-earth ions (REIs)…

cond-mat.mtrl-sci202012 cited

Inhomogeneous response of an ion ensemble from mechanical stress

S. Zhang, N. Galland, N. Lučić +6

Material strain has recently received growing attention as a complementary resource to control the energy levels of quantum emitters embedded inside a solid-state environment. Some…

physics.app-ph20204 cited

Microscale crystalline rare-earth doped resonators for strain-coupled optomechanics

J. F. Motte, N. Galland, J. Debray +7

Rare-earth ion doped crystals for hybrid quantum technologies is an area of growing interest in the solid-state physics community. We have earlier theoretically proposed a hybrid s…

cond-mat.mtrl-sci2019

Coherence Time Extension by Large Scale Optical Spin Polarization in a Rare-Earth Doped Crystal

Sacha Welinski, Alexey Tiranov, Moritz Businger +3

Optically addressable spins are actively investigated in quantum communication, processing and sensing. Optical and spin coherence lifetimes, which determine quantum operation fide…

quant-ph2019

Coherent optical and spin spectroscopy of nanoscale Pr3+:Y2O3

D. Serrano, C. Deshmukh, S. Liu +4

We investigate the potential for optical quantum technologies of Pr3+:Y2O3 in the form of monodisperse spherical nanoparticles. We measured optical inhomogeneous lines of 27 GHz, a…