The High-Luminosity LHC will provide the unique opportunity to explore the nature of physics beyond the Standard Model. Highly selective first level triggers are essential for the physics programme of the ATLAS experiment at the HL-LHC, where the instantaneous luminosity will exceed the LHC design instantaneous luminosity by almost an order of magnitude. The ATLAS first level muon trigger rate is dominated by low momentum muons, selected due to the moderate momentum resolution of the current system. This first level trigger limitation can be overcome by including data from the precision muon drift tube (MDT) chambers. This requires the fast continuous transfer of the MDT hits to the off-detector trigger logic and a fast track reconstruction...
The ATLAS trigger uses a three-level trigger system. The level-1 (L1) trigger for muons with high tr...
The outer shell of the ATLAS experiment at the LHC consists of a system of toroidal air-core magnets...
The Level-1 trigger for muons in ATLAS is based on trigger chambers (RPCs, TGCs) with excellent time...
The High-Luminosity LHC will provide the unique opportunity to explore the nature of physics beyond ...
The High-Luminosity LHC (HL-LHC) will provide the unique opportunity to explore the nature of physic...
Highly selective first level triggers are essential for the physics programme of the ATLAS experimen...
The High-Luminosity LHC will provide the unique opportunity to explore the nature of physics beyond ...
Highly selective triggers are essential for the physics programme of the ATLAS experiment at HL-LHC ...
Highly selective first level triggers are essential to exploit the full physics potential of the ATL...
The HL-LHC upgrade will significantly extend the collider’s physics reach with the increased luminos...
The design for the Level-0 endcap muon trigger of the ATLAS experiment at High-Luminosity LHC (HL-LH...
The ATLAS monitored drift tube (MDT) chambers are the main component of the precision tracking syste...
The Large Hadron Collider (LHC) at the European Centre for Particle Physics, CERN, collides protons ...
The first level (L0) muon trigger of the ATLAS experiment will be upgraded to operate at the High Lu...
The Monitored Drift Tube (MDT) chambers Trigger Processor (MDT-TP) is a key component in the upgrade...
The ATLAS trigger uses a three-level trigger system. The level-1 (L1) trigger for muons with high tr...
The outer shell of the ATLAS experiment at the LHC consists of a system of toroidal air-core magnets...
The Level-1 trigger for muons in ATLAS is based on trigger chambers (RPCs, TGCs) with excellent time...
The High-Luminosity LHC will provide the unique opportunity to explore the nature of physics beyond ...
The High-Luminosity LHC (HL-LHC) will provide the unique opportunity to explore the nature of physic...
Highly selective first level triggers are essential for the physics programme of the ATLAS experimen...
The High-Luminosity LHC will provide the unique opportunity to explore the nature of physics beyond ...
Highly selective triggers are essential for the physics programme of the ATLAS experiment at HL-LHC ...
Highly selective first level triggers are essential to exploit the full physics potential of the ATL...
The HL-LHC upgrade will significantly extend the collider’s physics reach with the increased luminos...
The design for the Level-0 endcap muon trigger of the ATLAS experiment at High-Luminosity LHC (HL-LH...
The ATLAS monitored drift tube (MDT) chambers are the main component of the precision tracking syste...
The Large Hadron Collider (LHC) at the European Centre for Particle Physics, CERN, collides protons ...
The first level (L0) muon trigger of the ATLAS experiment will be upgraded to operate at the High Lu...
The Monitored Drift Tube (MDT) chambers Trigger Processor (MDT-TP) is a key component in the upgrade...
The ATLAS trigger uses a three-level trigger system. The level-1 (L1) trigger for muons with high tr...
The outer shell of the ATLAS experiment at the LHC consists of a system of toroidal air-core magnets...
The Level-1 trigger for muons in ATLAS is based on trigger chambers (RPCs, TGCs) with excellent time...