The objective of the CERN RD50 Collaboration is to improve the radiation tolerance of semiconductor sensors used in high-energy physics experiments. CERN Research Board approved the Collaboration in June 2002. It currently consists of 55 member institutes and about 280 scientists. Each collaborating institute is participating in at least one of the RD50's six research lines. These research lines cover a large variety of studies on radiation hardness and radiation effects, including defect modelling, defect characterization, defect engineering, characterization of macroscopic effects, new materials, and full-size semiconductor detectors. In this paper, we concentrate on the defect engineering activities of the RD50. The latest experimental r...
The objective of the CERN RD50 Collaboration is the development of radiation hard semiconductor dete...
An option of increasing the luminosity of the Large Hadron Collider (LHC) at CERN to 10^(35) cm^( 12...
The CERN/RD50 collaboration is dedicated to the radiation hardening of semiconductor sensors for fut...
The objective of the CERN RD50 Collaboration is to develop radiation hard semiconductor detectors fo...
Silicon sensors are widely used as tracking detectors in high energy physics experiments. This resul...
The results and the current status of the CERN RD50 collaboration are presented. The device design a...
The need for radiation hard semiconductor detectors for the tracker regions in high energy physics e...
The objective of the RD50 collaboration is to develop radiation hard semiconductor detectors for ver...
A possible upgrade of the CERN Large Hadron Collider luminosity up to 10^35 cm−2 s−1 will rise the h...
The proposed luminosity upgrade of the Large Hadron Collider (S-LHC) at CERN will demand the innermo...
The proposed luminosity upgrade of the Large Hadron Collider (S-LHC) at CERN will demand the innermo...
The CERN RD50 Collaboration "Radiation hard semiconductor devices for high luminosity col- liders" i...
The need for ultra-radiation hard semiconductor detectors for the tracker regions in high energy phy...
The proposed luminosity upgrade of the Large Hadron Collider (S-LHC) at CERN will demand the innermo...
A possible upgrade of the CERN Large Hadron Collider luminosity up to 10**3**5cm**-**2s**-**1 will r...
The objective of the CERN RD50 Collaboration is the development of radiation hard semiconductor dete...
An option of increasing the luminosity of the Large Hadron Collider (LHC) at CERN to 10^(35) cm^( 12...
The CERN/RD50 collaboration is dedicated to the radiation hardening of semiconductor sensors for fut...
The objective of the CERN RD50 Collaboration is to develop radiation hard semiconductor detectors fo...
Silicon sensors are widely used as tracking detectors in high energy physics experiments. This resul...
The results and the current status of the CERN RD50 collaboration are presented. The device design a...
The need for radiation hard semiconductor detectors for the tracker regions in high energy physics e...
The objective of the RD50 collaboration is to develop radiation hard semiconductor detectors for ver...
A possible upgrade of the CERN Large Hadron Collider luminosity up to 10^35 cm−2 s−1 will rise the h...
The proposed luminosity upgrade of the Large Hadron Collider (S-LHC) at CERN will demand the innermo...
The proposed luminosity upgrade of the Large Hadron Collider (S-LHC) at CERN will demand the innermo...
The CERN RD50 Collaboration "Radiation hard semiconductor devices for high luminosity col- liders" i...
The need for ultra-radiation hard semiconductor detectors for the tracker regions in high energy phy...
The proposed luminosity upgrade of the Large Hadron Collider (S-LHC) at CERN will demand the innermo...
A possible upgrade of the CERN Large Hadron Collider luminosity up to 10**3**5cm**-**2s**-**1 will r...
The objective of the CERN RD50 Collaboration is the development of radiation hard semiconductor dete...
An option of increasing the luminosity of the Large Hadron Collider (LHC) at CERN to 10^(35) cm^( 12...
The CERN/RD50 collaboration is dedicated to the radiation hardening of semiconductor sensors for fut...