Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward muon detector system as GEM detectors provide a stable operation in the high radiation environment expected during the future High-Luminosity phase of the Large Hadron Collider (HL-LHC). In a first step, GEM chambers (detectors) will be installed in the innermost muon endcap station in the 1.6<2.2 pseudo-rapidity region, mainly to control level-1 muon trigger rates after the second LHC Long Shutdown. These new chambers will add redundancy to the muon system in the η-region where the background rates are high, and the bending of the muon trajectories due to the CMS magnetic field is small. A novel construction technique for such chambers h...
he dedicated CMS R&D program was intended to study the feasibility of using micropattern detectors f...
This report describes both the technical design and the expected performance of the Phase-II upgrade...
This report describes both the technical design and the expected performance of the Phase-II upgrade...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
The CMS experiment is one of the two general purpose experiments at the CERN LHC. During LHC Phase-2...
The CMS experiment is one of the two general purpose experiments at the LHC. For LHC Phase-2, the in...
International audienceFor the High-Luminosity LHC (HL-LHC) phase the CMS GEM Collaboration is planni...
International audienceFor the High-Luminosity LHC (HL-LHC) phase the CMS GEM Collaboration is planni...
International audienceFor the High-Luminosity LHC (HL-LHC) phase the CMS GEM Collaboration is planni...
The high-luminosity phase of the Large Hadron Collider (HL-LHC) will result in particle backgrounds ...
he dedicated CMS R&D program was intended to study the feasibility of using micropattern detectors f...
This report describes both the technical design and the expected performance of the Phase-II upgrade...
This report describes both the technical design and the expected performance of the Phase-II upgrade...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
Triple-GEM detector technology was recently selected by CMS for a part of the upgrade of its forward...
The CMS experiment is one of the two general purpose experiments at the CERN LHC. During LHC Phase-2...
The CMS experiment is one of the two general purpose experiments at the LHC. For LHC Phase-2, the in...
International audienceFor the High-Luminosity LHC (HL-LHC) phase the CMS GEM Collaboration is planni...
International audienceFor the High-Luminosity LHC (HL-LHC) phase the CMS GEM Collaboration is planni...
International audienceFor the High-Luminosity LHC (HL-LHC) phase the CMS GEM Collaboration is planni...
The high-luminosity phase of the Large Hadron Collider (HL-LHC) will result in particle backgrounds ...
he dedicated CMS R&D program was intended to study the feasibility of using micropattern detectors f...
This report describes both the technical design and the expected performance of the Phase-II upgrade...
This report describes both the technical design and the expected performance of the Phase-II upgrade...