The authors report correlations between variations in charge transport of electrons and holes in synthetic single crystal diamond and the presence of nitrogen impurities and dislocations. The spatial distribution of these defects was imaged using their characteristic luminescence emission and compared with maps of carrier drift length measured by ion beam induced charge imaging. The images indicate a reduction of electron and hole mobility-lifetime product due to nitrogen impurities and dislocations. Very good charge transport is achieved in selected regions where the dislocation density is minimal
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...
International audienceThe study of nitrogen-vacancy (NV) centers in diamond are growing attractive i...
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...
The authors report correlations between variations in charge transport of electrons and holes in syn...
International audienceWe have quantified substitutional impurity concentrations in synthetic diamond...
International audienceWe have quantified substitutional impurity concentrations in synthetic diamond...
High power electronics are today a real challenge for large band gap materials. Devices as simple as...
A high-quality, low-stress 200 {mu}m epitaxial diamond film has been grown on a 400 {mu}m thick high...
Diamond has been regarded as a promising radiation detector material for use as a solid state ionizi...
Diamond has been regarded as a promising radiation detector material for use as a solid state ionizi...
Diamond is a unique mineral widely used in diverse fields due to its remarkable properties. The deve...
Diamond has been regarded as a promising radiation detector material for the use as a solid state io...
Due to a number of unique intrinsic properties, diamond has been considered and studied as a solid s...
Due to a number of unique intrinsic properties, diamond has been considered and studied as a solid s...
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...
International audienceThe study of nitrogen-vacancy (NV) centers in diamond are growing attractive i...
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...
The authors report correlations between variations in charge transport of electrons and holes in syn...
International audienceWe have quantified substitutional impurity concentrations in synthetic diamond...
International audienceWe have quantified substitutional impurity concentrations in synthetic diamond...
High power electronics are today a real challenge for large band gap materials. Devices as simple as...
A high-quality, low-stress 200 {mu}m epitaxial diamond film has been grown on a 400 {mu}m thick high...
Diamond has been regarded as a promising radiation detector material for use as a solid state ionizi...
Diamond has been regarded as a promising radiation detector material for use as a solid state ionizi...
Diamond is a unique mineral widely used in diverse fields due to its remarkable properties. The deve...
Diamond has been regarded as a promising radiation detector material for the use as a solid state io...
Due to a number of unique intrinsic properties, diamond has been considered and studied as a solid s...
Due to a number of unique intrinsic properties, diamond has been considered and studied as a solid s...
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...
International audienceThe study of nitrogen-vacancy (NV) centers in diamond are growing attractive i...
International audienceA contrast clearly correlated with the linear defect network into boron-doped ...