Energy Response and Resolution to Positrons in a Capillary-Tube Dual-Readout Calorimeter

Fuente: arXiv
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Main Authors: Albergo, Sebastiano Francesco, Braghieri, Alessandro, Burdyko, Alexander, Cai, Yuchen, Carminati, Leonardo, Delfrate, Eleonora, Falchieri, Davide, Ferrari, Roberto, Gaudio, Gabriella, Giacomelli, Paolo, Centeno, Andreas Loeschcke, Mazzeo, Elena, Millesoli, Samuele, Nasella, Laura, Negri, Andrea, Pareti, Andrea, Persiani, Rino, Pezzotti, Lorenzo, Polesello, Giacomo, Salvatore, Fabrizio, Santoro, Romualdo, Tacchini, Luca Davide, Turra, Ruggero, Valle, Nicolo', Vivarelli, Iacopo
Format: Preprint
Published: 2025
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author Albergo, Sebastiano Francesco
Braghieri, Alessandro
Burdyko, Alexander
Cai, Yuchen
Carminati, Leonardo
Delfrate, Eleonora
Falchieri, Davide
Ferrari, Roberto
Gaudio, Gabriella
Giacomelli, Paolo
Centeno, Andreas Loeschcke
Mazzeo, Elena
Millesoli, Samuele
Nasella, Laura
Negri, Andrea
Pareti, Andrea
Persiani, Rino
Pezzotti, Lorenzo
Polesello, Giacomo
Salvatore, Fabrizio
Santoro, Romualdo
Tacchini, Luca Davide
Turra, Ruggero
Valle, Nicolo'
Vivarelli, Iacopo
author_facet Albergo, Sebastiano Francesco
Braghieri, Alessandro
Burdyko, Alexander
Cai, Yuchen
Carminati, Leonardo
Delfrate, Eleonora
Falchieri, Davide
Ferrari, Roberto
Gaudio, Gabriella
Giacomelli, Paolo
Centeno, Andreas Loeschcke
Mazzeo, Elena
Millesoli, Samuele
Nasella, Laura
Negri, Andrea
Pareti, Andrea
Persiani, Rino
Pezzotti, Lorenzo
Polesello, Giacomo
Salvatore, Fabrizio
Santoro, Romualdo
Tacchini, Luca Davide
Turra, Ruggero
Valle, Nicolo'
Vivarelli, Iacopo
contents We present the results of a test beam campaign on a capillary-tube fibre-based dual-readout calorimeter, designed for precise hadronic and electromagnetic energy measurements in future collider experiments. The calorimeter prototype consists of nine modules, each composed of brass capillary tubes housing scintillating and Cherenkov optical fibres, read out using silicon photomultipliers for the central module and photomultiplier tubes for the outer modules. The performance of the detector was assessed using a positron beam with energies ranging from 10 to 120 GeV at the CERN SPS H8 beamline. The prototype is characterised in terms of the linearity and resolution of its energy response to positrons. The results confirm the feasibility of the capillary-tube mechanical design for large-scale dual-readout calorimetry and provide a benchmark for future detector development within the HiDRa project.
format Preprint
id arxiv_https___arxiv_org_abs_2503_15616
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Energy Response and Resolution to Positrons in a Capillary-Tube Dual-Readout Calorimeter
Albergo, Sebastiano Francesco
Braghieri, Alessandro
Burdyko, Alexander
Cai, Yuchen
Carminati, Leonardo
Delfrate, Eleonora
Falchieri, Davide
Ferrari, Roberto
Gaudio, Gabriella
Giacomelli, Paolo
Centeno, Andreas Loeschcke
Mazzeo, Elena
Millesoli, Samuele
Nasella, Laura
Negri, Andrea
Pareti, Andrea
Persiani, Rino
Pezzotti, Lorenzo
Polesello, Giacomo
Salvatore, Fabrizio
Santoro, Romualdo
Tacchini, Luca Davide
Turra, Ruggero
Valle, Nicolo'
Vivarelli, Iacopo
Instrumentation and Detectors
High Energy Physics - Experiment
We present the results of a test beam campaign on a capillary-tube fibre-based dual-readout calorimeter, designed for precise hadronic and electromagnetic energy measurements in future collider experiments. The calorimeter prototype consists of nine modules, each composed of brass capillary tubes housing scintillating and Cherenkov optical fibres, read out using silicon photomultipliers for the central module and photomultiplier tubes for the outer modules. The performance of the detector was assessed using a positron beam with energies ranging from 10 to 120 GeV at the CERN SPS H8 beamline. The prototype is characterised in terms of the linearity and resolution of its energy response to positrons. The results confirm the feasibility of the capillary-tube mechanical design for large-scale dual-readout calorimetry and provide a benchmark for future detector development within the HiDRa project.
title Energy Response and Resolution to Positrons in a Capillary-Tube Dual-Readout Calorimeter
topic Instrumentation and Detectors
High Energy Physics - Experiment
url https://arxiv.org/abs/2503.15616