In 2002 the COMPASS experiment at CERN has started to take physics data. The fixed target experiment at the SPS uses muon and hadron beams of very high intensity to investigate the structure of the nucleon. For beam definition and small angle trac king silicon microstrip detectors are used. This article describes the current design and the performance of the cryogenic cooling system of these detectors as well as the further development which is underway
A low-mass cryogenic cooling technique for silicon sensor modules has been developed in the framewor...
A new Silicon microstrip detector was developed for the COMPASS experiment at the CERN / SPS. The de...
A new fixed target experiment is being constructed at CERN. It has the goal to investigate hadron st...
The COMPASS experiment at CERN uses sili- con microstrip detectors for beam definition and vertex re...
The recent advances in Si and diamond detector technology give hope of a simple solution to the radi...
The main characteristics of the COMPASS experimental setup for physics with hadron beams are describ...
The COMPASS experiment at CERN uses silicon microstrip detectors for beam defini- tion and during ha...
The COMPASS experiment at CERN employs silicon microstrip detectors in the target region which are c...
Abbon P, Albrecht E, Alexakhin VY, et al. The COMPASS experiment at CERN. Nucl.Instrum.Meth. A. 2007...
The COMPASS experiment makes use of the CERN SPS high-intensity muon and hadron beams for the invest...
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 ...
CERN is presently constructing the LHC, which will produce collisions of 7 TeV protons in 4 interact...
CERN RD39 Collaboration is working on radiation hard cryogenic silicon detectors, for environments s...
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...
A new Silicon microstrip detector was developed for the COMPASS experiment at the CERN / SPS. The de...
A new fixed target experiment is being constructed at CERN. It has the goal to investigate hadron st...
The COMPASS experiment at CERN uses sili- con microstrip detectors for beam definition and vertex re...
The recent advances in Si and diamond detector technology give hope of a simple solution to the radi...
The main characteristics of the COMPASS experimental setup for physics with hadron beams are describ...
The COMPASS experiment at CERN uses silicon microstrip detectors for beam defini- tion and during ha...
The COMPASS experiment at CERN employs silicon microstrip detectors in the target region which are c...
Abbon P, Albrecht E, Alexakhin VY, et al. The COMPASS experiment at CERN. Nucl.Instrum.Meth. A. 2007...
The COMPASS experiment makes use of the CERN SPS high-intensity muon and hadron beams for the invest...
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 ...
CERN is presently constructing the LHC, which will produce collisions of 7 TeV protons in 4 interact...
CERN RD39 Collaboration is working on radiation hard cryogenic silicon detectors, for environments s...
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...
A new Silicon microstrip detector was developed for the COMPASS experiment at the CERN / SPS. The de...
A new fixed target experiment is being constructed at CERN. It has the goal to investigate hadron st...