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AbstractAbstract
[en] Electron and photon triggers covering transverse energies from 5 GeV to several TeV are essential for the ATLAS experiment to record signals for a wide variety of physics: from Standard Model processes to searches for new phenomena in both proton–proton and heavy-ion collisions. To cope with a fourfold increase of peak LHC luminosity from 2015 to 2018 (Run 2), to 2.1×10 cm s, and a similar increase in the number of interactions per beam-crossing to about 60, trigger algorithms and selections were optimised to control the rates while retaining a high efficiency for physics analyses. For proton–proton collisions, the single-electron trigger efficiency relative to a single-electron offline selection is at least 75% for an offline electron of 31 GeV , and rises to 96% at 60 GeV ; the trigger efficiency of a 25 GeV leg of the primary diphoton trigger relative to a tight offline photon selection is more than 96% for an offline photon of 30 GeV . For heavy-ion collisions, the primary electron and photon trigger efficiencies relative to the corresponding standard offline selections are at least 84% and 95%, respectively, at 5 GeV above the corresponding trigger threshold.
Primary Subject
Source
Available from: http://dx.doi.org/10.1140/epjc/s10052-019-7500-2; AID: 47
Record Type
Journal Article
Journal
European Physical Journal. C, Particles and Fields (Online); ISSN 1434-6052;
; v. 80(1); p. 1-41

Country of publication
ALGORITHMS, ATLAS DETECTOR, DATA ACQUISITION, DATA ANALYSIS, EFFECTIVE MASS, EFFICIENCY, ELECTRON DETECTION, GAMMA DETECTION, GEV RANGE 01-10, GEV RANGE 100-1000, GEV RANGE 10-100, HEAVY ION REACTIONS, MASS SPECTROSCOPY, PARTICLE DISCRIMINATION, PERFORMANCE, PROTON-PROTON INTERACTIONS, TEV RANGE 01-10, TRANSVERSE ENERGY, TRIGGER CIRCUITS
BARYON-BARYON INTERACTIONS, CHARGED PARTICLE DETECTION, DATA PROCESSING, DETECTION, ELECTRONIC CIRCUITS, ENERGY, ENERGY RANGE, GEV RANGE, HADRON-HADRON INTERACTIONS, INTERACTIONS, KINETIC ENERGY, MASS, MATHEMATICAL LOGIC, MEASURING INSTRUMENTS, NUCLEAR REACTIONS, NUCLEON-NUCLEON INTERACTIONS, PARTICLE IDENTIFICATION, PARTICLE INTERACTIONS, PROCESSING, PROTON-NUCLEON INTERACTIONS, PULSE CIRCUITS, RADIATION DETECTION, RADIATION DETECTORS, SPECTROSCOPY, TEV RANGE
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