The deposition conditions and the detection properties of a homoepitaxial diamond film, grown by microwave Chemical Vapor Deposition (CVD) on a HPHT single crystal substrate are reported. The charge collection spectrum, measured under irradiation with a triple (239)Pu (241)AM (244)Cm source emitting 5.16, 5.48 and 5.80 MeV alpha-particles respectively, shows three clearly resolved peaks with an energy resolution of about 1.1%. Both the charge collection efficiency and the energy resolution reach saturation values when the applied voltage exceeds 60 V, suggesting 100% collection efficiency. The detector was also tested with 14.8 and 14.1 MeV neutrons. The obtained collection spectra show a well separated (12)C(n,alpha(0))(9)Be reaction peak ...
Polycrystalline chemical vapor deposited (CVD) diamond detectors are of great interest in harsh envi...
In this study synthetic diamonds are investigated with respect to the applicability as a material fo...
Polycrystalline chemical vapour deposited (CVD) diamond film is an interesting material for neutron ...
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...
The growth conditions and the detection properties of a homoepitaxial diamond film, deposited in Rom...
Diamond is a very attractive material to realize nuclear detectors due do its outstanding properties...
Microwave CVD diamond films with very high particle detection efficiency have been obtained using a ...
Response function measurement of layered-type chemical vapor deposition single crystal diamond radia...
In this work, the single crystal Chemical Vapor Deposition (CVD) diamond detectors were designed and...
Diamond films grown by microwave plasma enhanced chemical vapor deposition have been investigated as...
Chemical Vapour Deposition (CVD) Polycrystalline Diamond film has been investigated as a low noise s...
Polycrystalline chemical vapor deposited (CVD) diamond detectors are of great interest in harsh envi...
In this study synthetic diamonds are investigated with respect to the applicability as a material fo...
Polycrystalline chemical vapour deposited (CVD) diamond film is an interesting material for neutron ...
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...
The growth conditions and the detection properties of a homoepitaxial diamond film, deposited in Rom...
Diamond is a very attractive material to realize nuclear detectors due do its outstanding properties...
Microwave CVD diamond films with very high particle detection efficiency have been obtained using a ...
Response function measurement of layered-type chemical vapor deposition single crystal diamond radia...
In this work, the single crystal Chemical Vapor Deposition (CVD) diamond detectors were designed and...
Diamond films grown by microwave plasma enhanced chemical vapor deposition have been investigated as...
Chemical Vapour Deposition (CVD) Polycrystalline Diamond film has been investigated as a low noise s...
Polycrystalline chemical vapor deposited (CVD) diamond detectors are of great interest in harsh envi...
In this study synthetic diamonds are investigated with respect to the applicability as a material fo...
Polycrystalline chemical vapour deposited (CVD) diamond film is an interesting material for neutron ...