Nitrogen-vacancy color centers in diamond are a very promising medium for many sensing applications such as magnetometry and thermometry. In this work, we study nanodiamonds deposited from a suspension onto glass substrates. Fluorescence and optically detected magnetic resonance spectra recorded with the dried-out nanodiamond ensembles are presented and a suitable scheme for tracking the magnetic-field value using a continuous poly-crystalline spectrum is introduced. Lastly, we demonstrate a remote-sensing capability of the high-numerical-aperture imaging fiber bundle with nanodiamonds deposited on its end facet
This research explored the use of nanodiamonds as magnetic sensors and their interaction with biolog...
Diamond-based magnetometry utilizes the negatively charged nitrogen-vacancy color center NV. For sen...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Magnetometry with nitrogen-vacancy (NV) color centers in diamond has gained significant interest amo...
The nitrogen-vacancy (NV) centre in diamond has proven to be an excellent tool to probe electro-magn...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
Nitrogen-Vacancy (NV) color center in diamond is a flourishing research area that, in recent years, ...
Nitrogen-Vacancy (NV) color center in diamond is a flourishing research area that, in recent years, ...
Thesis submitted for the degree of Doctor of Philosophy, Macquarie University, Department of Physics...
Powered by the mutual developments in instrumentation, materials and theoretical descriptions, sens...
This research explored the use of nanodiamonds as magnetic sensors and their interaction with biolog...
Nanodiamonds containing negatively charged nitrogen vacancy centers (NV−) have applications as local...
Nanodiamonds containing negatively charged nitrogen vacancy centers (NV−) have applications as local...
Nanodiamonds containing negatively charged nitrogen vacancy centers (NV−) have applications as local...
This research explored the use of nanodiamonds as magnetic sensors and their interaction with biolog...
This research explored the use of nanodiamonds as magnetic sensors and their interaction with biolog...
Diamond-based magnetometry utilizes the negatively charged nitrogen-vacancy color center NV. For sen...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...
Magnetometry with nitrogen-vacancy (NV) color centers in diamond has gained significant interest amo...
The nitrogen-vacancy (NV) centre in diamond has proven to be an excellent tool to probe electro-magn...
The NV defect center in diamond forms a pseudo-atomic quantum system with discreet optically excitab...
Nitrogen-Vacancy (NV) color center in diamond is a flourishing research area that, in recent years, ...
Nitrogen-Vacancy (NV) color center in diamond is a flourishing research area that, in recent years, ...
Thesis submitted for the degree of Doctor of Philosophy, Macquarie University, Department of Physics...
Powered by the mutual developments in instrumentation, materials and theoretical descriptions, sens...
This research explored the use of nanodiamonds as magnetic sensors and their interaction with biolog...
Nanodiamonds containing negatively charged nitrogen vacancy centers (NV−) have applications as local...
Nanodiamonds containing negatively charged nitrogen vacancy centers (NV−) have applications as local...
Nanodiamonds containing negatively charged nitrogen vacancy centers (NV−) have applications as local...
This research explored the use of nanodiamonds as magnetic sensors and their interaction with biolog...
This research explored the use of nanodiamonds as magnetic sensors and their interaction with biolog...
Diamond-based magnetometry utilizes the negatively charged nitrogen-vacancy color center NV. For sen...
Nitrogen-vacancy colour centres in diamond can undergo strong, spin-sensitive optical transitions un...