CERN RD39 Collaboration is working on radiation hard cryogenic silicon detectors, for environments such as at the Super-LHC. A promising technique for the operation of low temperature detectors and diodes is the current injection of pre-irradiated samples (CID). A new setup, based on the Cryogenic Transient Current Technique (C-TCT), has been built to characterize Si samples (CCE). In addition, we report here some preliminary measurements for the evaluation of laser and plasma-cut sensors developed for edgeless detectors, for which the sensitive area should extend to a few μm from the physical border
Beam Loss Monitors (BLM) made of silicon are new devices for monitoring of radiation environment in ...
A low-mass cryogenic cooling technique for silicon sensor modules has been developed in the framewor...
Radiation hardness up to 1016 neq/cm2 is required in the future HEP experiments for most inner detec...
CERN RD39 Collaboration is working on radiation hard cryogenic silicon detectors, for environments s...
CERN RD39 Collaboration develops radiation-hard cryogenic silicon detectors. Recently, we have demon...
There are two key approaches in our CERN RD 39 Collaboration efforts to obtain ultra-radiation-hard ...
The recent advances in Si and diamond detector technology give hope of a simple solution to the radi...
The CERN RD39 Collaboration is developing super-radiation hard cryogenic Si detectors for applicatio...
The CERN RD39 Collaboration has constructed a Transient Current Technique (TCT) measurement setup, w...
Beam Loss Monitors (BLM) made of silicon are new devices for monitoring of radiation environment in ...
A low-mass cryogenic cooling technique for silicon sensor modules has been developed in the framewor...
Radiation hardness up to 1016 neq/cm2 is required in the future HEP experiments for most inner detec...
CERN RD39 Collaboration is working on radiation hard cryogenic silicon detectors, for environments s...
CERN RD39 Collaboration develops radiation-hard cryogenic silicon detectors. Recently, we have demon...
There are two key approaches in our CERN RD 39 Collaboration efforts to obtain ultra-radiation-hard ...
The recent advances in Si and diamond detector technology give hope of a simple solution to the radi...
The CERN RD39 Collaboration is developing super-radiation hard cryogenic Si detectors for applicatio...
The CERN RD39 Collaboration has constructed a Transient Current Technique (TCT) measurement setup, w...
Beam Loss Monitors (BLM) made of silicon are new devices for monitoring of radiation environment in ...
A low-mass cryogenic cooling technique for silicon sensor modules has been developed in the framewor...
Radiation hardness up to 1016 neq/cm2 is required in the future HEP experiments for most inner detec...