Single-Photon Nanoantennas

Наноантенны для одиночных фотонов
A. Femius Koenderink
2017-03-10

Purcell enhancementdirectivity controlfluorescence brightness enhancementquantum emitterssingle-photon nanoantennas
Single-photon nanoantennas are broadband strongly scattering nanostructures placed in the near field of a single quantum emitter, with the goal to enhance the coupling between the emitter and far-field radiation channels. Recently, great strides have been made in the use of nanoantennas to realize fluorescence brightness enhancements, and Purcell enhancements, of several orders of magnitude. This perspective reviews the key figures of merit by which single-photon nanoantenna performance is quantified and the recent advances in measuring these metrics unambiguously. Next, this perspective discusses what the state of the art is in terms of fluoresent brightness enhancements, Purcell factors, and directivity control on the level of single photons. Finally, I discuss future challenges for single-photon nanoantennas.
1
Future challenges remain in advancing single-photon nanoantenna performance and functionality.
2
Recent nanoantenna implementations have achieved fluorescence brightness and Purcell enhancements of several orders of magnitude.
3
Single-photon nanoantennas are broadband, strongly scattering nanostructures that enhance coupling between a single quantum emitter and far-field radiation channels.
4
The perspective identifies key performance metrics for single-photon nanoantennas and reviews advances enabling their unambiguous measurement.
5
The state of the art is assessed for single-photon fluorescence brightness enhancement, Purcell factors, and directivity control.

single-photon nanoantennas coupled to a single quantum emitter

performance metrics and enhancement of emitter–radiation coupling, including fluorescence brightness, Purcell factors, and single-photon directivity

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2017-03-10
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A. Femius Koenderink
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