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dc.contributor.authorPalombo Blascetta, Nicola
dc.contributor.authorLiebel, Matz
dc.contributor.authorLu, Xiaobo
dc.contributor.authorTaniguchi, Takashi
dc.contributor.authorWatanabe, Kenji
dc.contributor.authorEfetov, Dmitri K.
dc.contributor.authorHulst, Niek F. van
dc.date.accessioned2020-02-17T12:12:13Z
dc.date.issued2020-02-13
dc.identifier.citationPalombo Blascetta, N. [et al.]. Nanoscale Imaging and Control of hexagonal BoronNitride Single Photon Emitters by a Resonant Nano-antenna. "Nano Letters", 13 Febrer 2020.
dc.identifier.urihttp://hdl.handle.net/2117/177826
dc.description.abstractDefect centers in two-dimensional hexagonal boron nitride (hBN) are drawing attention as single photon emitters with high photo-stability at room temperature. With their ultra-high photon-stability, hBN single photon emitters are promising for new applications in quantum technologies and for two-dimensional material based optoelectronics. Here, we control the emission rate of hBN-defects by coupling these to resonant plasmonic nanocavities. By deterministic control of the antenna we acquire high-resolution emission maps of the single hBN-defects. Using time-gating, we can discriminate the hBN defect emission from the antenna luminescence. We observe sharp dips (40 nm FWHM) in emission, together with a reduction with the luminescence lifetime. Comparing with FDTD simulations we conclude that both radiative and non-radiative rates are enhanced, which effectively reduce the quantum efficiency. Also, the large refractive index of the hBN largely screens off the local antenna field enhancement. Finally, based on the insight gained, we propose a close-contact design for an order of magnitude brighter hBN single photon emission.
dc.format.extent22 p.
dc.language.isoeng
dc.publisherAmerican Chemical Society
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Spain
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.subjectÀrees temàtiques de la UPC::Física
dc.subject.lcshAntennas (Electronics)
dc.subject.otherimaging
dc.titleNanoscale Imaging and Control of hexagonal BoronNitride Single Photon Emitters by a Resonant Nano-antenna
dc.typeArticle
dc.subject.lemacAntenes (Electrònica)
dc.identifier.doi10.1021/acs.nanolett.9b05268
dc.description.peerreviewedPeer Reviewed
dc.relation.publisherversionhttps://pubs-acs-org.recursos.biblioteca.upc.edu/doi/10.1021/acs.nanolett.9b05268
dc.rights.accessRestricted access - publisher's policy
dc.description.versionPostprint (author's final draft)
dc.relation.projectidinfo:eu-repo/grantAgreement/EC/H2020/670949/EU/LightNet/LightNet
dc.relation.projectidinfo:eu-repo/grantAgreement/EC/H2020/820378/EU/Two-dimensional quantum materials and devices for scalable integrated photonic circuits/2D-SIPC
dc.relation.projectidinfo:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/RTI2018-099957-J-I00/ES/VISUALIZACION EN 3D DE PROCESOS DINAMICOS EN CELULAS VIVAS/
dc.relation.projectidinfo:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PGC2018-096875-B-I00/ES/ACOPLAMIENTO OPTICO RESONANTE GIGANTE/
dc.relation.projectidinfo:eu-repo/grantAgreement/MINECO//FIS2015-69258-P/ES/FEMTONANO : VISTAS ULTRARRAPIDAS DE TRANSPORTE CUANTICO EN NANO-REDES FOTONICAS NATURALES/
dc.relation.projectidBES-2016-078727
dc.relation.projectidinfo:eu-repo/grantAgreement/MINECO//SEV-2015-0522/ES/AGR-INSTITUTO DE CIENCIAS FOTONICAS/
dc.relation.projectid2017SGR1369
dc.date.lift10000-01-01
local.citation.publicationNameNano Letters


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