Zugriffsnummer 39374
Dokumenttyp Konferenzartikel
Sprache Englisch
Titel Absolute single-photon source based on a nitrogen-vacancy center in nanodiamond
Autor(in); Institution
Rodiek, Beatrice; 4.1, Photometrie und angewandte Radiometrie, PTB-Braunschweig
Lopez Ordonez, Marco Antonio; 4.1, Photometrie und angewandte Radiometrie, PTB-Braunschweig
Hofer, Helmuth; 4.1, Photometrie und angewandte Radiometrie, PTB-Braunschweig
Porrovecchio, Geiland; Cesky Metrologicky Institut (CMI), Brno, CZECH REPUBLIC
Smid, Marek; Cesky Metrologicky Institut (CMI), Brno, CZECH REPUBLIC
Chu, Xiao-Liu; Friedrich Alexander University (FAU) Erlangen-Nürnberg, Erlangen, GERMANY
Götzinger, Stephan; Friedrich Alexander University (FAU) Erlangen-Nürnberg, Erlangen, GERMANY
Sandoghdar, Vahid; Max Planck Institute for the Science of Light, Erlangen, GERMANY
Lindner, Sarah; Universität des Saarlandes, Saarbrücken, GERMANY
Becher, Christoph; Universität des Saarlandes, Saarbrücken, GERMANY
Kück, Stefan; 4.1, Photometrie und angewandte Radiometrie, PTB-Braunschweig
Quelle/Jahr 13th International Conference on New Developments and Applications in Optical Radiometry (NEWRAD 2017): Proceedings:(2017), 73 - 74
Availability [USB-Stick]
Verlag [s.l.]:
Konferenzangaben NEWRAD 2017: 13th International Conference on New Developments and Applications in Optical Radiometry, Tokyo, 13-16, June, 2017, Japan
Zusammenfassung We present the absolute single-photon source recently developed at PTB based on a nitrogen-vacancy center in a nanodiamond. The source was characterized in terms of its absolute spectral photon flux per wavelength. Its photon flux was measured with a low-noise optical flux detector traceable to the cryogenic radiometer, while its spectral distribution was determined by using a calibrated spectroradiometer. The single-photon emission is tunable in the range from 55 fW to 75 fW, which corresponds to 190,000 photons per second and 260,000 photons per second, respectively.

Zitierung

Rodiek, B., Lopez Ordonez, M. A., Hofer, H., Porrovecchio, G., Smid, M., Chu, X.-L., Götzinger, S., Sandoghdar, V., Lindner, S., Becher, C., & Kück, S. (2017). Absolute single-photon source based on a nitrogen-vacancy center in nanodiamond. NEWRAD 2017: 13th International Conference on New Developments and Applications in Optical Radiometry, Tokyo, 13-16, June, 2017, Japan.

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