This paper summarizes works on the development of detectors operated with external current injection (CID, Current Injected Detector) that makes it possible to significantly improve the detector operation at very high fluences. In a CID, the injected carriers allow the manipulation of the electric field distribution in the detector in such a way that the detector is fully depleted at any fluence. Detailed modeling and analysis of the CID enable us to define the range of operational temperature and detector bias. These studies on CID show the predictability of the CID operation and illustrate the benefit in the signal amplitude and operational bias voltage as compared to the standard p+–i–n+ detectors
LHCb is the dedicated flavour physics experiment of the LHC. The experiment is designed for probing ...
The LHCb experiment is a high energy physics detector at the Large Hadron Collider (LHC) which will ...
The LHCb experiment is a high energy physics detector at the Large Hadron Collider (LHC) which will ...
For the upcoming Super LHC (SLHC) experiments on the LHC upgrade, Si detectors will still be conside...
Experimental results and simulations of Charge Collection Efficiency (CCE) of Current Injected Detec...
A heavily irradiated (3 x 10(15) 1 MeV n(eq)/cm(2)) Current Injected Detector (CID) was tested with ...
There are two key approaches in our CERN RD 39 Collaboration efforts to obtain ultra-radiation-hard ...
CERN RD39 Collaboration develops radiation-hard cryogenic silicon detectors. Recently, we have demon...
This study presents the results on the modeling of the electric field distribution, which is control...
Radiation hardness up to 1016 neq/cm2 is required in the future HEP experiments for most inner detec...
Beam Loss Monitors (BLM) made of silicon are new devices for monitoring of radiation environment in ...
LHCb is the dedicated flavour physics experiment of the LHC. The experiment is designed for probing ...
In current particle physics experiments, silicon strip detectors are widely used as part of the inne...
CERN RD39 Collaboration is working on radiation hard cryogenic silicon detectors, for environments s...
LHCb is the dedicated flavour physics experiment of the LHC. The experiment is designed for probing ...
The LHCb experiment is a high energy physics detector at the Large Hadron Collider (LHC) which will ...
The LHCb experiment is a high energy physics detector at the Large Hadron Collider (LHC) which will ...
For the upcoming Super LHC (SLHC) experiments on the LHC upgrade, Si detectors will still be conside...
Experimental results and simulations of Charge Collection Efficiency (CCE) of Current Injected Detec...
A heavily irradiated (3 x 10(15) 1 MeV n(eq)/cm(2)) Current Injected Detector (CID) was tested with ...
There are two key approaches in our CERN RD 39 Collaboration efforts to obtain ultra-radiation-hard ...
CERN RD39 Collaboration develops radiation-hard cryogenic silicon detectors. Recently, we have demon...
This study presents the results on the modeling of the electric field distribution, which is control...
Radiation hardness up to 1016 neq/cm2 is required in the future HEP experiments for most inner detec...
Beam Loss Monitors (BLM) made of silicon are new devices for monitoring of radiation environment in ...
LHCb is the dedicated flavour physics experiment of the LHC. The experiment is designed for probing ...
In current particle physics experiments, silicon strip detectors are widely used as part of the inne...
CERN RD39 Collaboration is working on radiation hard cryogenic silicon detectors, for environments s...
LHCb is the dedicated flavour physics experiment of the LHC. The experiment is designed for probing ...
The LHCb experiment is a high energy physics detector at the Large Hadron Collider (LHC) which will ...
The LHCb experiment is a high energy physics detector at the Large Hadron Collider (LHC) which will ...