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7篇 您的检索式:作者名="DUBERTRET Benoit"
    题名 作者 年代 出处 被引量
1In vivo imaging of quantum dots encapsulated in phospholipid micelles显示文摘DUBERTRET Benoit 2002Science2002,298,29:1
2In vivo imaging of quantum dots encapsulated in phospholipid micelles 显示文摘Dubertret Benoit Skourides Paris Norris David J 2002Science2002,298,5599:1
3Quantum dots:DNA detectives显示文摘Benoit Dubertret 2005Nature materials2005,11,4:1
4In vivo imaging of quantum dot encapsulated in phosphlipid micelles显示文摘DUBERTRET Benoit SKOURIDES Paris NORRIS David J et al 2002Science2002,298,:1
5In vivo imaging of quantum dots encapsulated in phospholipid micelles显示文摘Benoit Dubertret Paris Skourides David J Norris 2003Science2003,298,:1
6Extreme multiexciton emission from deterministically assembled single-emitter subwavelength plasmonic patch antennas显示文摘Coupling nano-emitters to plasmonic antennas is a key milestone for the development of nanoscale quantum light sources.One challenge,however,is the precise nanoscale positioning of the emitter in the structure.Here,we present a laser etching protocol that deterministically positions a single colloidal CdSe/CdS core/shell quantum dot emitter inside a subwavelength plasmonic patch antenna with three-dimensional nanoscale control.By exploiting the properties of metal–insulator–metal structures at the nanoscale,the fabricated single-emitter antenna exhibits a very high-Purcell factor(>72)and a brightness enhancement of a factor of 70.Due to the unprecedented quenching of Auger processes and the strong acceleration of the multiexciton emission,more than 4 photons per pulse can be emitted by a single quantum dot,thus increasing the device yield.Our technology can be applied to a wide range of photonic nanostructures and emitters,paving the way for scalable and reliable fabrication of ultracompact light sources.Amit Raj Dhawan Cherif Belacel Juan Uriel Esparza-Villa Michel Nasilowski Zhiming Wang Catherine Schwob Jean-Paul Hugonin Laurent Coolen Benoit Dubertret Pascale Senellart Agnes Maitre 2020Light(Science & Applications)2020,9,1:0
7Consequence of shape elongation on emission asymmetry for colloidal CdSe/CdS nanoplatelets显示文摘在这份报纸,我们证明为胶体的 CdSe/CdS nanoplatelets,矩形的形状导致排放不对称现象,以极化和排放模式。测极化和排放模式分析被联合在涉及 nanoplatelet 排放的转变偶极子的取向上提供信息。为矩形的 nanoplatelets,排放被极化,排放模式是各向异性的,这被显示出,而他们仍然保持为方形的 nanoplatelets 非极化、各向同性。这能被矩形的血小板的伸长的形状导致的绝缘的天线效果适当地描述。Fu Fengt Loan Thu Nguyen Michel Nasilowski Brice Nadal Benoit Dubertret Laurent Coolent Agnes Maitre 2018Nano Research2018,11,7:0
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