A high-granularity calorimeter insert based on SiPM-on-tile technology at the future Electron-Ion Collider
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arXiv
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| Main Authors: | , , , , , , , , , , , , , |
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| Format: | Preprint |
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2022
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| _version_ | 1866916189997891584 |
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| author | Arratia, Miguel Barish, Kenneth Blanchard, Liam Huang, Huan Z. Ji, Zhongling Karki, Bishnu Long, Owen Milton, Ryan Paul, Ananya Paul, Sebouh J. Preins, Sean Schmookler, Barak Tsai, Oleg Xu, Zhiwan |
| author_facet | Arratia, Miguel Barish, Kenneth Blanchard, Liam Huang, Huan Z. Ji, Zhongling Karki, Bishnu Long, Owen Milton, Ryan Paul, Ananya Paul, Sebouh J. Preins, Sean Schmookler, Barak Tsai, Oleg Xu, Zhiwan |
| contents | We present a design for a high-granularity calorimeter insert for future experiments at the Electron-Ion Collider (EIC). The sampling-calorimeter design uses scintillator tiles read out with silicon photomultipliers. It maximizes coverage close to the beampipe, while solving challenges arising from the beam-crossing angle and mechanical integration. It yields a compensated response that is linear over the energy range of interest for the EIC. Its energy resolution meets the requirements set in the EIC Yellow Report even with a basic reconstruction algorithm. Moreover, this detector will provide 5D shower data (position, energy, and time), which can be exploited with machine-learning techniques. This detector concept has the potential to unleash the power of imaging calorimetry at the EIC to enable measurements at extreme kinematics in electron-proton and electron-nucleus collisions. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2208_05472 |
| institution | arXiv |
| publishDate | 2022 |
| record_format | arxiv |
| spellingShingle | A high-granularity calorimeter insert based on SiPM-on-tile technology at the future Electron-Ion Collider Arratia, Miguel Barish, Kenneth Blanchard, Liam Huang, Huan Z. Ji, Zhongling Karki, Bishnu Long, Owen Milton, Ryan Paul, Ananya Paul, Sebouh J. Preins, Sean Schmookler, Barak Tsai, Oleg Xu, Zhiwan Instrumentation and Detectors High Energy Physics - Experiment Nuclear Experiment We present a design for a high-granularity calorimeter insert for future experiments at the Electron-Ion Collider (EIC). The sampling-calorimeter design uses scintillator tiles read out with silicon photomultipliers. It maximizes coverage close to the beampipe, while solving challenges arising from the beam-crossing angle and mechanical integration. It yields a compensated response that is linear over the energy range of interest for the EIC. Its energy resolution meets the requirements set in the EIC Yellow Report even with a basic reconstruction algorithm. Moreover, this detector will provide 5D shower data (position, energy, and time), which can be exploited with machine-learning techniques. This detector concept has the potential to unleash the power of imaging calorimetry at the EIC to enable measurements at extreme kinematics in electron-proton and electron-nucleus collisions. |
| title | A high-granularity calorimeter insert based on SiPM-on-tile technology at the future Electron-Ion Collider |
| topic | Instrumentation and Detectors High Energy Physics - Experiment Nuclear Experiment |
| url | https://arxiv.org/abs/2208.05472 |