A single crystal diamond (SCD) detector and a polycrystalline diamond (PCD) detector have been designed and fabricated using electronic grade CVD diamond. The fabricated detectors were tested for their dark current and X-ray photocurrent. It was found that the SCD and PCD detectors have superb signal to noise ratios (SNR) under X-ray irradiation from an Ag target with 10kV and 40kV accelerating voltage, 2000 and 7000 respectively for the SCD detector and 550 and 2000 for the PCD detector. The performance of these detectors using an 241Am α source was tested under different bias voltages and the results were benchmarked against a commercial SCD detector. The typical rise time of an α event in both of the fabricated detectors are about 1.2ns....
International audienceDiamond is a material in use at many nuclear and high energy facilities due to...
A number of diamond detectors, obtained by a two-step growing procedure by chemical vapour depositio...
The deposition conditions and the detection properties of a homoepitaxial diamond film, grown by mic...
The detection properties of heteropitaxial (polycrystalline, pCVD) and homoepitaxial (single crystal...
Chemical Vapour Deposition (CVD) Polycrystalline Diamond film has been investigated as a low noise s...
At the end of the next decade an upgrade of the Large Hadron Collider (LHC) to High Luminosity LHC (...
The inherent properties of diamond make it an ideal material for detectors in the high rate, high ra...
Proceedings of the 26th International Conference on Diamond and Carbon Materials (DCM), 6-10 Septemb...
Interest in radiation detectors has supplied some of the impetus for improving the electronic proper...
In this work, the single crystal Chemical Vapor Deposition (CVD) diamond detectors were designed and...
Chemical Vapor Deposited (CVD) polycrystalline diamond has been proposed as a radiation-hard alterna...
Chemical Vapor Deposition (CVD) diamond has been discussed extensively as an alternative sensor mate...
Diamond was studied as a possible radiation hard technology for use in future high radiation environ...
Polycrystalline chemical vapour deposited (CVD) diamond film is an interesting material for neutron ...
International audienceDiamond is a material in use at many nuclear and high energy facilities due to...
A number of diamond detectors, obtained by a two-step growing procedure by chemical vapour depositio...
The deposition conditions and the detection properties of a homoepitaxial diamond film, grown by mic...
The detection properties of heteropitaxial (polycrystalline, pCVD) and homoepitaxial (single crystal...
Chemical Vapour Deposition (CVD) Polycrystalline Diamond film has been investigated as a low noise s...
At the end of the next decade an upgrade of the Large Hadron Collider (LHC) to High Luminosity LHC (...
The inherent properties of diamond make it an ideal material for detectors in the high rate, high ra...
Proceedings of the 26th International Conference on Diamond and Carbon Materials (DCM), 6-10 Septemb...
Interest in radiation detectors has supplied some of the impetus for improving the electronic proper...
In this work, the single crystal Chemical Vapor Deposition (CVD) diamond detectors were designed and...
Chemical Vapor Deposited (CVD) polycrystalline diamond has been proposed as a radiation-hard alterna...
Chemical Vapor Deposition (CVD) diamond has been discussed extensively as an alternative sensor mate...
Diamond was studied as a possible radiation hard technology for use in future high radiation environ...
Polycrystalline chemical vapour deposited (CVD) diamond film is an interesting material for neutron ...
International audienceDiamond is a material in use at many nuclear and high energy facilities due to...
A number of diamond detectors, obtained by a two-step growing procedure by chemical vapour depositio...
The deposition conditions and the detection properties of a homoepitaxial diamond film, grown by mic...