DOE OSTI · 3419675
Performance Validation of Endcap Timing Layer Detector Modules for CMS Phase-2 Upgrade
Abstract
The High-Luminosity Large Hadron Collider (HL-LHC) will operate up to 200 simultaneous collisions per bunch crossing, which is a significant jump from the current value of about 30 collisions per bunch crossing, producing significant pileup that challenges accurate event reconstruction. To address this, the Compact Muon Solenoid (CMS) experiment is implementing the Endcap Timing Layer (ETL), a precision timing detector designed to provide timing measurements with a resolution of approximately 50 ps per hit and 35 ps per reconstructed track. This project focuses on the characterization and validation of ETL detector modules using laboratory laser test data. ETL performance is evaluated by analyzing key quantities such as Bunch Crossing Identification (BCID), Time-of-Arrival (TOA), Time-over-Threshold (TOT), Noise Stability etc. The resulting analysis provides insight into the timing performance and operational stability of ETL modules, contributing to the quality assurance process req uired before their installation in the CMS experiment and ensure that the modules can meet the long-term reliability requirements of approximately 10 years of operation without replacement.
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Chipara, Munashe [Fermilab], Dutta, Irene [Fermilab], Xie, Si [Fermilab], Lee, Dongyub [Fermilab]. 2026-08-17. Performance Validation of Endcap Timing Layer Detector Modules for CMS Phase-2 Upgrade. https://doi.org/10.2172/3419675
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