On-demand positioning of a preselected quantum emitter on a fiber-coupled toroidal microresonator. Gregor, M., Henze, R., Schröder, T., & Benson, O. Applied Physics Letters, 95(15):153110, October, 2009. Publisher: American Institute of Physics
Paper doi abstract bibtex The coupling of a quantum emitter to the modes of a silica toroid is presented. A fiber taper is used to manipulate and transfer a preselected diamond nanocrystal onto the toroid. Optical coupling of few nitrogen vacancy (NV) color centers contained inside the nanocrystal to the resonator modes is demonstrated by detecting the fluorescence via a tapered optical fiber coupler. A clear antibunching in the photon correlation measurement is observed indicating emission from only six NV centers residing inside the nanocrystal. The latter is confirmed by a photoluminescence spectrum at liquid helium temperature resolving individual zero phonon lines.
@article{gregor_-demand_2009,
title = {On-demand positioning of a preselected quantum emitter on a fiber-coupled toroidal microresonator},
volume = {95},
issn = {0003-6951},
url = {https://aip.scitation.org/doi/full/10.1063/1.3243989},
doi = {10.1063/1.3243989},
abstract = {The coupling of a quantum emitter to the modes of a silica toroid is presented. A fiber taper is used to manipulate and transfer a preselected diamond nanocrystal onto the toroid. Optical coupling of few nitrogen vacancy (NV) color centers contained inside the nanocrystal to the resonator modes is demonstrated by detecting the fluorescence via a tapered optical fiber coupler. A clear antibunching in the photon correlation measurement is observed indicating emission from only six NV centers residing inside the nanocrystal. The latter is confirmed by a photoluminescence spectrum at liquid helium temperature resolving individual zero phonon lines.},
number = {15},
urldate = {2022-08-03},
journal = {Applied Physics Letters},
author = {Gregor, Markus and Henze, Rico and Schröder, Tim and Benson, Oliver},
month = oct,
year = {2009},
note = {Publisher: American Institute of Physics},
pages = {153110},
}
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