In this paper, we describe measurements of the response functions of a fiber-based dual-readout calorimeter for pions, protons and multiparticle ‘‘jets’’ with energies in the range from 20 to 180 GeV. The calorimeter uses lead as absorber material and has a total mass of 1350 kg. It is complemented by leakage counters made of scintillating plastic, with a total mass of 500 kg. The effects of these leakage counters on the calorimeter performance are studied as well. In a separate section, we investigate and compare different methods to measure the energy resolution of a calorimeter. Using only the signals provided by the calorimeter, we demonstrate that our dual-readout calorimeter, calibrated with electrons, is able to reconstruct the energy of proton and pion beam particles to within a few percent at all energies. The fractional widths of the signal distributions for these particles (!_E) scale with the beam energy as 30%_ ˘ E, without any additional contributing terms.

Hadron detection with a dual-readout fiber calorimeter

FRATERNALI, MARCO;LIVAN, MICHELE;
2017-01-01

Abstract

In this paper, we describe measurements of the response functions of a fiber-based dual-readout calorimeter for pions, protons and multiparticle ‘‘jets’’ with energies in the range from 20 to 180 GeV. The calorimeter uses lead as absorber material and has a total mass of 1350 kg. It is complemented by leakage counters made of scintillating plastic, with a total mass of 500 kg. The effects of these leakage counters on the calorimeter performance are studied as well. In a separate section, we investigate and compare different methods to measure the energy resolution of a calorimeter. Using only the signals provided by the calorimeter, we demonstrate that our dual-readout calorimeter, calibrated with electrons, is able to reconstruct the energy of proton and pion beam particles to within a few percent at all energies. The fractional widths of the signal distributions for these particles (!_E) scale with the beam energy as 30%_ ˘ E, without any additional contributing terms.
2017
The Physics category includes resources of a broad, general nature that contain materials from all areas of physics, The category also includes resources specifically concerned with the following physics sub-fields: mathematical physics, particle and nuclear physics, physics of fluids and plasmas, quantum physics, and theoretical physics.
Esperti anonimi
Inglese
Internazionale
STAMPA
866
76
90
15
Dual-readout calorimetry; Optical fibers; ÄŒerenkov light; Nuclear and High Energy Physics; Instrumentation
http://www.sciencedirect.com/science/journal/01689002
20
info:eu-repo/semantics/article
262
Lee, S.; Cardini, A.; Cascella, M.; Choi, S.; Ciapetti, G.; Ferrari, R.; Franchino, S.; Fraternali, Marco; Gaudio, G.; Ha, S.; Hauptman, J.; Kim, H.; ...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1188792
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