The performance of detectors based on CVD diamond films strongly depends on the material quality, which, in turn, is extremely sensitive to even slight variations of the deposition conditions. In this work, a careful Raman and photoluminescence (PL) study has been carried out on diamond films grown on Si substrates by microwave plasma CVD under nominally identical deposition conditions, but exhibiting, quite surprisingly, different detection sensitivity. Micro-PL measurements performed on the growth surface and on the cross-section of the samples have shown higher incorporation of Si impurities in films having lower detection performance. Optical microscopy on the nucleation side of such films has evidenced a lower nucleation density, leadi...
High quality synthetic diamonds have been grown on single-crystal silicon by microwave plasma enhanc...
A set of diamond films was grown by microwave plasma enhanced chemical vapour deposition using a CO2...
A set of diamond films was grown by microwave plasma enhanced chemical vapour deposition using a CO2...
The performance of detectors based on CVD diamond films strongly depends on the material quality, wh...
The performance of detectors based on CVD diamond films strongly depends on the material quality, wh...
The performance of detectors based on CVD diamond films strongly depends on the material quality, wh...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
Diamond thin films were grown on silicon substrates using microwave plasma chemical vapour depositio...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced c...
High quality synthetic diamonds have been grown on single-crystal silicon by microwave plasma enhanc...
High quality synthetic diamonds have been grown on single-crystal silicon by microwave plasma enhanc...
High quality synthetic diamonds have been grown on single-crystal silicon by microwave plasma enhanc...
A set of diamond films was grown by microwave plasma enhanced chemical vapour deposition using a CO2...
A set of diamond films was grown by microwave plasma enhanced chemical vapour deposition using a CO2...
The performance of detectors based on CVD diamond films strongly depends on the material quality, wh...
The performance of detectors based on CVD diamond films strongly depends on the material quality, wh...
The performance of detectors based on CVD diamond films strongly depends on the material quality, wh...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced ch...
Diamond thin films were grown on silicon substrates using microwave plasma chemical vapour depositio...
High quality synthetic diamonds were grown on single-crystal silicon by microwave plasma enhanced c...
High quality synthetic diamonds have been grown on single-crystal silicon by microwave plasma enhanc...
High quality synthetic diamonds have been grown on single-crystal silicon by microwave plasma enhanc...
High quality synthetic diamonds have been grown on single-crystal silicon by microwave plasma enhanc...
A set of diamond films was grown by microwave plasma enhanced chemical vapour deposition using a CO2...
A set of diamond films was grown by microwave plasma enhanced chemical vapour deposition using a CO2...