Run 2 calibration data show the TileCal optics lost up to 11 percent light in the hottest cells, with a dose-rate-dependent model predicting about half the light lost in the inner layer by the end of HL-LHC.
Laser calibration of the ATLAS Tile Calorimeter during LHC Run 2
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abstract
This article reports the laser calibration of the hadronic Tile Calorimeter of the ATLAS experiment in the LHC Run 2 data campaign. The upgraded Laser II calibration system is described. The system was commissioned during the first LHC Long Shutdown, exhibiting a stability better than 0.8% for the laser light monitoring. The methods employed to derive the detector calibration factors with data from the laser calibration runs are also detailed. These allowed to correct for the response fluctuations of the 9852 photomultiplier tubes of the Tile Calorimeter with a total uncertainty of 0.5% plus a luminosity-dependent sub-dominant term. Finally, we report the regular monitoring and performance studies using laser events in both standalone runs and during proton collisions. These studies include channel timing and quality inspection, and photomultiplier linearity and response dependence on anode current.
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Study of the Radiation Hardness of the ATLAS Tile Calorimeter Optical Instrumentation with Run 2 data
Run 2 calibration data show the TileCal optics lost up to 11 percent light in the hottest cells, with a dose-rate-dependent model predicting about half the light lost in the inner layer by the end of HL-LHC.