Control over the quantum states of individual luminescent nitrogen-vacancy (NV) centres in nanodiamonds (NDs) is demonstrated by careful design of the crystal host: its size, surface functional groups, and interfacing substrate. By progressive etching of the ND host, the NV centres are induced to switch from latent, through continuous, to intermittent or "blinking" emission states. The blinking mechanism of the NV centre in NDs is elucidated and a qualitative model proposed to explain this phenomenon in terms of the centre electron(s) tunnelling to acceptor site(s). These measurements suggest that the substrate material and its proximity to the NV are responsible for the fluorescence intermittency. The emission state of nitrogen-vacancy (NV...
The nitrogen-vacancy (NV) color center in diamond has attracted a lot of attention during the past f...
Colour centres in nanodiamonds provide robust sources of fluorescence and can be used as triggered s...
Nanodiamonds containing negatively-charged Nitrogen-Vacancy (NV-) centers are versatile room-tempera...
Control over the quantum states of individual luminescent nitrogen-vacancy (NV) centres in nanodiamo...
The spontaneous emission rate properties of diamond nitrogen-vacancy (NV) centres are largely depend...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
The nitrogen vacancy (NV) center is the most widely studied single optical defect in diamond with gr...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
We measure distributions of emission rates of single nitrogen vacancy color centers in nanodiamond c...
The nitrogen vacancy (NV) center is the most widely studied single optical defect in diamond with gr...
The nitrogen vacancy (NV) center is the most widely studied single optical defect in diamond with gr...
Spontaneous emission from crystal centers is influenced by both the photonic local density of states...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
© 2014 American Chemical Society. In this paper, new steps toward a better understanding and utiliza...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
The nitrogen-vacancy (NV) color center in diamond has attracted a lot of attention during the past f...
Colour centres in nanodiamonds provide robust sources of fluorescence and can be used as triggered s...
Nanodiamonds containing negatively-charged Nitrogen-Vacancy (NV-) centers are versatile room-tempera...
Control over the quantum states of individual luminescent nitrogen-vacancy (NV) centres in nanodiamo...
The spontaneous emission rate properties of diamond nitrogen-vacancy (NV) centres are largely depend...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
The nitrogen vacancy (NV) center is the most widely studied single optical defect in diamond with gr...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
We measure distributions of emission rates of single nitrogen vacancy color centers in nanodiamond c...
The nitrogen vacancy (NV) center is the most widely studied single optical defect in diamond with gr...
The nitrogen vacancy (NV) center is the most widely studied single optical defect in diamond with gr...
Spontaneous emission from crystal centers is influenced by both the photonic local density of states...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
© 2014 American Chemical Society. In this paper, new steps toward a better understanding and utiliza...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
The nitrogen-vacancy (NV) color center in diamond has attracted a lot of attention during the past f...
Colour centres in nanodiamonds provide robust sources of fluorescence and can be used as triggered s...
Nanodiamonds containing negatively-charged Nitrogen-Vacancy (NV-) centers are versatile room-tempera...