Modification of spontaneous emission from nanodiamond colour centres on a structured surface

Модификация спонтанного излучения цветовых центров нанодимантов на структурированной поверхности
F A Inam, T Gaebel, C Bradac, L Stewart, M J Withford, J M Dawes, J R Rabeau, M J Steel
2011-07-11

emission lifetimenanodiamond colour centresnitrogen-vacancy centresopal photonic crystalspontaneous emission
Colour centres in diamond are promising candidates as a platform for quantum technologies and biomedical imaging based on spins and/or photons. Controlling the emission properties of colour centres in diamond is a key requirement for the development of efficient single-photon sources having high collection efficiency. A number of groups have achieved an enhancement in the emission rate over narrow wavelength ranges by coupling single emitters in nanodiamond crystals to resonant electromagnetic structures. In this paper, we characterize in detail the spontaneous emission rates of nitrogen-vacancy centres at various locations on a structured substrate. We found a factor of 1.5 average enhancement of the total emission rate when nanodiamonds are on an opal photonic crystal surface, and observed changes in the lifetime distribution. We present a model for explaining these observations and associate the lifetime properties with dipole orientation and polarization effects.
1
A model attributes the observed lifetime properties to nitrogen-vacancy dipole orientation and polarization effects.
2
Nanodiamonds placed on an opal photonic crystal surface show an average 1.5-fold enhancement of the total emission rate.
3
The structured surface modifies the distribution of emitter lifetimes, indicating changes beyond a simple uniform emission-rate enhancement.
4
The study characterizes spontaneous emission rates of nitrogen-vacancy centres at different nanodiamond locations on a structured substrate.

nitrogen-vacancy colour centres in nanodiamonds located on an opal photonic crystal surface

modification of spontaneous emission rates and lifetime distributions, including dipole-orientation and polarization effects

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Publication Date
2011-07-11
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Authors
F A Inam
T Gaebel
C Bradac
L Stewart
M J Withford
J M Dawes
J R Rabeau
M J Steel
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