Characterization of novel silicon pixel detectors based on the new HV-CMOS technology, for the ATLAS ITk upgrade and the future CLIC vertex detector. Both ATLAS ITk and the CLIC vertex detectors are designed with high demanding requirements, pushing to the limits the standard technologies used for silicon pixel detectors. The new HV-CMOS technology allows implementing a sensor and read-out device in the same silicon substrate, combining the high-voltage performance of planar silicon sensors with the signal amplification and digitization of dedicated read-out chips, eliminating the need of the detector hybridization. HV-CMOS monolithic prototypes have been investigated for implementation in the ATLAS ITk detector, while HV-CMOS devices imple...
For the HL-LHC upgrade the current ATLAS Inner Detector is replaced by an all-silicon system. The Pi...
The requirements for precision physics and the experimental conditions at CLIC result in stringent c...
HEP experiments at particle colliders probe our understanding of the structure and dynamics of matte...
This thesis contains the Ph.D. work done on the characterization of novel silicon pixel detectors, b...
International audienceA few industrial CMOS foundries offer a High Voltage (HV) design option and ev...
International audienceA few industrial CMOS foundries offer a High Voltage (HV) design option and ev...
High-voltage particle detectors in commercial CMOS technologies are a detector family that allows im...
The physics aims at the proposed high-energy e+e− collider CLIC pose challenging demands on the perf...
High-voltage particle detectors in commercial CMOS technologies are a detector family that allows im...
The next steps in particle physics will involve colliders that are able to investigate the TeV energ...
To cope with the rate and radiation environment expected at the HL-LHC new approaches are being deve...
In the search for new physics, the Large Hadron Collider at CERN will be upgraded around year 2025, ...
Current high energy particle physics experiments at the LHC use hybrid silicon detectors, in both pi...
For the HL-LHC upgrade the current ATLAS Inner Detector is replaced by an all-silicon system. The Pi...
To cope with the rate and radiation environment expected at the HL-LHC new approaches are being deve...
For the HL-LHC upgrade the current ATLAS Inner Detector is replaced by an all-silicon system. The Pi...
The requirements for precision physics and the experimental conditions at CLIC result in stringent c...
HEP experiments at particle colliders probe our understanding of the structure and dynamics of matte...
This thesis contains the Ph.D. work done on the characterization of novel silicon pixel detectors, b...
International audienceA few industrial CMOS foundries offer a High Voltage (HV) design option and ev...
International audienceA few industrial CMOS foundries offer a High Voltage (HV) design option and ev...
High-voltage particle detectors in commercial CMOS technologies are a detector family that allows im...
The physics aims at the proposed high-energy e+e− collider CLIC pose challenging demands on the perf...
High-voltage particle detectors in commercial CMOS technologies are a detector family that allows im...
The next steps in particle physics will involve colliders that are able to investigate the TeV energ...
To cope with the rate and radiation environment expected at the HL-LHC new approaches are being deve...
In the search for new physics, the Large Hadron Collider at CERN will be upgraded around year 2025, ...
Current high energy particle physics experiments at the LHC use hybrid silicon detectors, in both pi...
For the HL-LHC upgrade the current ATLAS Inner Detector is replaced by an all-silicon system. The Pi...
To cope with the rate and radiation environment expected at the HL-LHC new approaches are being deve...
For the HL-LHC upgrade the current ATLAS Inner Detector is replaced by an all-silicon system. The Pi...
The requirements for precision physics and the experimental conditions at CLIC result in stringent c...
HEP experiments at particle colliders probe our understanding of the structure and dynamics of matte...