Events containing muons in the final state are an important signature for many analyses being carried out at the Large Hadron Collider (LHC), including both standard model measurements and searches for new physics. To be able to study such events, it is required to have an efficient and well-understood muon trigger. The ATLAS muon trigger consists of a hardware based system (Level-1), as well as a software based reconstruction (high-level trigger). Due to high luminosity and pile-up conditions in Run 2, several improvements have been implemented to keep the trigger rate low while still maintaining a high efficiency. Some examples of recent improvements include requiring coincidence hits between different layers of the muon spectrometer, imp...
Events with muons in the final state are an important signature for many physics topics at Large Had...
Events with muons in the final state are an important signature for many physics topics at Large Had...
The physics program of the ATLAS experiment at CERN's Large Hadron Collider (LHC) includes the searc...
Events containing muons in the final state are an important signature for many analyses being carrie...
Events containing muons in the final state are an important signature for many analyses being carrie...
Events containing muons in the final state are an important signature for many analyses being carrie...
Events containing muons in the final state are an important signature for many analyses being carrie...
Muon triggers are essential for studying a variety of physics processes in the ATLAS experiment, inc...
Events with muons in the final state are an important signature for many physics topics at the Large...
Events containing muons, electrons or photons in the final state are an important signature for many...
Events containing muons, electrons or photons in the final state are an important signature for many...
The ATLAS experiment at CERN's Large Hadron Collider (LHC) deploys a three-level processing scheme f...
Events with muons in the final state are an important signature for many physics topics at the Large...
The ATLAS experiment at the Large Hadron Collider (LHC) has taken data at a centre-of-mass energy be...
Events with muons in the final state are an important signature for many physics topics at Large Had...
Events with muons in the final state are an important signature for many physics topics at Large Had...
The physics program of the ATLAS experiment at CERN's Large Hadron Collider (LHC) includes the searc...
Events containing muons in the final state are an important signature for many analyses being carrie...
Events containing muons in the final state are an important signature for many analyses being carrie...
Events containing muons in the final state are an important signature for many analyses being carrie...
Events containing muons in the final state are an important signature for many analyses being carrie...
Muon triggers are essential for studying a variety of physics processes in the ATLAS experiment, inc...
Events with muons in the final state are an important signature for many physics topics at the Large...
Events containing muons, electrons or photons in the final state are an important signature for many...
Events containing muons, electrons or photons in the final state are an important signature for many...
The ATLAS experiment at CERN's Large Hadron Collider (LHC) deploys a three-level processing scheme f...
Events with muons in the final state are an important signature for many physics topics at the Large...
The ATLAS experiment at the Large Hadron Collider (LHC) has taken data at a centre-of-mass energy be...
Events with muons in the final state are an important signature for many physics topics at Large Had...
Events with muons in the final state are an important signature for many physics topics at Large Had...
The physics program of the ATLAS experiment at CERN's Large Hadron Collider (LHC) includes the searc...