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First-ever deployment of a SiPM-on-tile calorimeter in a collider: a parasitic test with 200 GeV p p collisions at RHIC.
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Abstract
We describe the testing of a prototype SiPM-on-tile
iron-scintillator calorimeter at the Relativistic Heavy Ion Collider
(RHIC) during its 200 GeV p p run in 2024. The prototype,
measuring 20 × 20 cm2 and 24 radiation lengths
in depth, was positioned in the STAR experimental hall,
approximately 8 m from the interaction point and 65 cm from the
beam line, covering a pseudorapidity range of about
3.1 < η < 3.4. By using the dark current of a reference SiPM as a
radiation monitor, we estimate that the prototype was exposed to a
fluence of about
1010 1-MeV n
eq/cm2. Channel-by-channel
calibration was performed in a data-driven way with the signature
from minimum-ionizing particles during beam-on conditions. A
Geant4 detector simulation, with inputs from the
Pythia8 event generator, describes measurements of energy
spectra and hit multiplicities reasonably well. These results mark
the first deployment, commissioning, calibration, and long-term
operation of a SiPM-on-tile calorimeter in a collider
environment. This experimental campaign will guide detector designs
and operational strategies for the ePIC detector at the future EIC,
as well as other applications.
Title: First-ever deployment of a SiPM-on-tile calorimeter in a collider: a parasitic test with 200 GeV p p collisions at RHIC.
Description:
Abstract
We describe the testing of a prototype SiPM-on-tile
iron-scintillator calorimeter at the Relativistic Heavy Ion Collider
(RHIC) during its 200 GeV p p run in 2024.
The prototype,
measuring 20 × 20 cm2 and 24 radiation lengths
in depth, was positioned in the STAR experimental hall,
approximately 8 m from the interaction point and 65 cm from the
beam line, covering a pseudorapidity range of about
3.
1 < η < 3.
4.
By using the dark current of a reference SiPM as a
radiation monitor, we estimate that the prototype was exposed to a
fluence of about
1010 1-MeV n
eq/cm2.
Channel-by-channel
calibration was performed in a data-driven way with the signature
from minimum-ionizing particles during beam-on conditions.
A
Geant4 detector simulation, with inputs from the
Pythia8 event generator, describes measurements of energy
spectra and hit multiplicities reasonably well.
These results mark
the first deployment, commissioning, calibration, and long-term
operation of a SiPM-on-tile calorimeter in a collider
environment.
This experimental campaign will guide detector designs
and operational strategies for the ePIC detector at the future EIC,
as well as other applications.
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