Fluorescent color-center patterns have been written on surfaces of synthetic type-Ib diamonds with spatial resolution below 180 nm via irradiation with focused ion and electron beams and subsequent annealing. The patterns are detected and spectroscopically analyzed using confocal optical microscopy. From the spatial extent of the color-center distributions, the activation energy for diffusion of vacancies in diamond is determined as (2.55+UL0.15) e V. Detailed information about the formation of color centers in diamond is obtained employing the three-dimensional spatial resolution of the confocal microscope combined with spectral resolution. In particular, the distributions of two color centers, ascribed to different charge states of the NV...
Quantum information applications place stringent demands on the development of platforms that can ho...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
Individual, luminescent point defects in solids, so-called color centers, are atomic-sized quantum s...
We present a high throughput and systematic method for the screening of colour centres in diamond wi...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
Solid state quantum memories, such as color centers in diamond, are a leading platform for the distr...
Charged nitrogen-vacancy (NV) color centers in diamond are excellent luminescence sources for far-fi...
Charged nitrogen-vacancy (NV) color centers in diamond are excellent luminescence sources for far-fi...
We performed nanomachining combined with photoluminescence spectroscopy to understand the depth dist...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
Diamonds are widely used for jewelry owing to their superior optical properties accounting for their...
The nitrogen-vacancy (NV) centre in diamond is emerging as a promising platform for solid-state quan...
Although the spin properties of superficial shallow nitrogen-vacancy (NV) centers have been the subj...
Recently it was shown that a single molecule at cryogenic temperatures could be used as a local ligh...
Zonal and sectorial heterogeneities in natural diamonds provide information on the growth conditions...
Quantum information applications place stringent demands on the development of platforms that can ho...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
Individual, luminescent point defects in solids, so-called color centers, are atomic-sized quantum s...
We present a high throughput and systematic method for the screening of colour centres in diamond wi...
Diamond is host to a wide variety of colour centres that show attractive optical and spin properties...
Solid state quantum memories, such as color centers in diamond, are a leading platform for the distr...
Charged nitrogen-vacancy (NV) color centers in diamond are excellent luminescence sources for far-fi...
Charged nitrogen-vacancy (NV) color centers in diamond are excellent luminescence sources for far-fi...
We performed nanomachining combined with photoluminescence spectroscopy to understand the depth dist...
We use focused ion beam (FIB) etching to create suspended photonic crystal cavities in diamond. Our ...
Diamonds are widely used for jewelry owing to their superior optical properties accounting for their...
The nitrogen-vacancy (NV) centre in diamond is emerging as a promising platform for solid-state quan...
Although the spin properties of superficial shallow nitrogen-vacancy (NV) centers have been the subj...
Recently it was shown that a single molecule at cryogenic temperatures could be used as a local ligh...
Zonal and sectorial heterogeneities in natural diamonds provide information on the growth conditions...
Quantum information applications place stringent demands on the development of platforms that can ho...
A nitrogen-vacancy (NV) color center in nanodiamond (NV–ND) exhibits a range of unique luminescent p...
Individual, luminescent point defects in solids, so-called color centers, are atomic-sized quantum s...