activity
20042009
most citedStark shift control of single optical centers in diamond

352 citations · 909 across the 5 of their papers we have counts for

collaborators
Showing cond-mat.mtrl-sciShow all

6 papers · 1 filter

cond-mat.mtrl-sci2009101 cited

Prediction and measurement of the size-dependent stability of fluorescence in diamond over the entire nanoscale

Carlo Bradac, Torsten Gaebel, Nishen Naidoo +2

Fluorescent defects in non-cytotoxic diamond nanoparticles are candidates for qubits in quantum computing, optical labels in biomedical imaging and sensors in magnetometry. For eac…

cond-mat.mtrl-sci2005

Implantation of labelled single nitrogen vacancy centers in diamond using 15N

J. R. Rabeau*, P. Reichart, G. Tamanyan +7

Nitrogen-vacancy (NV-) color centers in diamond were created by implantation of 7 keV 15N (I = 1/2) ions into type IIa diamond. Optically detected magnetic resonance was employed t…

cond-mat.mtrl-sci2005

Photochromism in single nitrogen-vacancy defect in diamond

T. Gaebel, M. Domhan, C. Wittmann +8

Photochromism in single nitrogen-vacancy optical centers in diamond is demonstrated. Time-resolved optical spectroscopy shows that intense irradiation at 514 nm switches the nitrog…

cond-mat.mtrl-sci200477 cited

Diamond chemical vapor deposition on optical fibers for fluorescence waveguiding

J. R. Rabeau, S. T. Huntington, A. D. Greentree +1

A technique has been developed for depositing diamond crystals on the endfaces of optical fibers and capturing the fluorescence generated by optically active defects in the diamond…

cond-mat.mtrl-sci2004

Fabrication of single nickel-nitrogen defects in diamond by chemical vapor deposition

J. R. Rabeau, Y. L. Chin, S. Prawer +3

Fabrication of single nickel-nitrogen (NE8) defect centers in diamond by chemical vapor deposition is demonstrated. Under continuous-wave 745 nm laser excitation single defects wer…

cond-mat.mtrl-sci2004

The role of C2 in nanocrystalline diamond growth

J. R. Rabeau, Y. Fan, P. John +1

This paper presents findings from a study of nanocrystalline diamond (NCD) growth in a microwave plasma chemical vapour deposition (CVD) reactor. NCD films were grown using Ar/H2/C…