Abstract With the number of qubits increasing with each new quantum processor design, it is to be expected that the area of the future quantum devices will become larger. As diamond is one of the promising materials for solid state quantum devices fabricated by ion implantation, we developed a single board diamond detector/preamplifier implantation system to serve as a testbed for implantation sites of different areas and geometry. We determined that for simple circular openings in a detector electrode, the uniformity of detection of the impinging ions increases as the area of the sites decreases. By altering the implantation site design and introducing lateral electric field, we were able to increase the area of the implantation site by an...
The presence of single atoms, e.g. dopant atoms, in sub-100 nm scale electronic devices can affect t...
This paper reports on the fabrication and characterization of a high purity monocrystalline diamond ...
The development of material-processing techniques that can be used to generate optical diamond nanos...
With the number of qubits increasing with each new quantum processor design, it is to be expected th...
Nitrogen-vacancy (NV) in diamond possesses unique properties for the realization of novel quantum de...
© 2013 Dr. Barbara Anne FairchildDiamond is a material with extreme physical properties unlike any o...
Interest in single-ion implantation is driven in part by research into development of solid-state de...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
Several solid state quantum computer schemes are based on the manipulation of electron and nuclear s...
Ever increasing demand for more radiation resistant detectors from experiments such as those at the ...
Diamond possesses outstanding properties such as high mobility, radiation hardness, low intrinsic ca...
© 2010 Virginia DrummThe remarkable attributes of diamond make it a promising material for the imple...
Color centers in diamond, as single photon emitters, are leading candidates for future quantum devic...
We prepared four NV center ensembles with different nitrogen atom doses at the same diamond by ion i...
The presence of single atoms, e.g. dopant atoms, in sub-100 nm scale electronic devices can affect t...
This paper reports on the fabrication and characterization of a high purity monocrystalline diamond ...
The development of material-processing techniques that can be used to generate optical diamond nanos...
With the number of qubits increasing with each new quantum processor design, it is to be expected th...
Nitrogen-vacancy (NV) in diamond possesses unique properties for the realization of novel quantum de...
© 2013 Dr. Barbara Anne FairchildDiamond is a material with extreme physical properties unlike any o...
Interest in single-ion implantation is driven in part by research into development of solid-state de...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
Several solid state quantum computer schemes are based on the manipulation of electron and nuclear s...
Ever increasing demand for more radiation resistant detectors from experiments such as those at the ...
Diamond possesses outstanding properties such as high mobility, radiation hardness, low intrinsic ca...
© 2010 Virginia DrummThe remarkable attributes of diamond make it a promising material for the imple...
Color centers in diamond, as single photon emitters, are leading candidates for future quantum devic...
We prepared four NV center ensembles with different nitrogen atom doses at the same diamond by ion i...
The presence of single atoms, e.g. dopant atoms, in sub-100 nm scale electronic devices can affect t...
This paper reports on the fabrication and characterization of a high purity monocrystalline diamond ...
The development of material-processing techniques that can be used to generate optical diamond nanos...