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CALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectors

Future space experiments dedicated to the observation of high-energy gamma and cosmic rays will increasingly rely on a highly performing calorimetry apparatus, and their physics performance will be primarily determined by the geometrical dimensions and the energy resolution of the calorimeter deploy...

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Autores principales: Bongi, M, Adriani, O, Albergo, S, Auditore, L, Bagliesi, M G, Berti, E, Bigongiari, G, Boezio, M, Bonechi, L, Bonechi, S, Bonvicini, V, Bottai, S, Brogi, P, Carotenuto, G, Cassese, A, Castellini, G, Cattaneo, P W, Cauz, D, Cumani, P, D'Alessandro, R, Detti, S, Fasoli, M, Gregorio, A, Lamberto, A, Lenzi, P, Maestro, P, Marrocchesi, P S, Mezzasalma, A, Miritello, M, Mori, N, Papini, P, Pauletta, G, Rappazzo, G F, Rappoldi, A, Ricciarini, S, Spillantini, P, Starodubtsev, O, Sulaj, A, Tiberio, A, Trifiro, A, Trimarchi, M, Vannuccini, E, Vedda, A, Zampa, G, Zampa, N, Zerbo, B
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/587/1/012029
http://cds.cern.ch/record/2295066
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author Bongi, M
Adriani, O
Albergo, S
Auditore, L
Bagliesi, M G
Berti, E
Bigongiari, G
Boezio, M
Bonechi, L
Bonechi, S
Bonvicini, V
Bottai, S
Brogi, P
Carotenuto, G
Cassese, A
Castellini, G
Cattaneo, P W
Cauz, D
Cumani, P
D'Alessandro, R
Detti, S
Fasoli, M
Gregorio, A
Lamberto, A
Lenzi, P
Maestro, P
Marrocchesi, P S
Mezzasalma, A
Miritello, M
Mori, N
Papini, P
Pauletta, G
Rappazzo, G F
Rappoldi, A
Ricciarini, S
Spillantini, P
Starodubtsev, O
Sulaj, A
Tiberio, A
Trifiro, A
Trimarchi, M
Vannuccini, E
Vedda, A
Zampa, G
Zampa, N
Zerbo, B
author_facet Bongi, M
Adriani, O
Albergo, S
Auditore, L
Bagliesi, M G
Berti, E
Bigongiari, G
Boezio, M
Bonechi, L
Bonechi, S
Bonvicini, V
Bottai, S
Brogi, P
Carotenuto, G
Cassese, A
Castellini, G
Cattaneo, P W
Cauz, D
Cumani, P
D'Alessandro, R
Detti, S
Fasoli, M
Gregorio, A
Lamberto, A
Lenzi, P
Maestro, P
Marrocchesi, P S
Mezzasalma, A
Miritello, M
Mori, N
Papini, P
Pauletta, G
Rappazzo, G F
Rappoldi, A
Ricciarini, S
Spillantini, P
Starodubtsev, O
Sulaj, A
Tiberio, A
Trifiro, A
Trimarchi, M
Vannuccini, E
Vedda, A
Zampa, G
Zampa, N
Zerbo, B
author_sort Bongi, M
collection CERN
description Future space experiments dedicated to the observation of high-energy gamma and cosmic rays will increasingly rely on a highly performing calorimetry apparatus, and their physics performance will be primarily determined by the geometrical dimensions and the energy resolution of the calorimeter deployed. Thus it is extremely important to optimize its geometrical acceptance, the granularity, and its absorption depth for the measurement of the particle energy with respect to the total mass of the apparatus which is the most important constraint for a space launch. The proposed design tries to satisfy these criteria while staying within a total mass budget of about 1.6 tons. Calocube is a homogeneous calorimeter instrumented with Cesium iodide (CsI) crystals, whose geometry is cubic and isotropic, so as to detect particles arriving from every direction in space, thus maximizing the acceptance, granularity is obtained by filling the cubic volume with small cubic CsI crystals. The total radiation length in any direction is more than adequate for optimal electromagnetic particle identification and energy measurement, whilst the interaction length is at least suficient to allow a precise reconstruction of hadronic showers. Optimal values for the size of the crystals and spacing among them have been studied. The design forms the basis of a three-year R&D; activity which has been approved and financed by INFN. An overall description of the system, as well as results from preliminary tests on particle beams will be described.
id oai-inspirehep.net-1344882
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling oai-inspirehep.net-13448822021-02-09T10:06:49Zdoi:10.1088/1742-6596/587/1/012029http://cds.cern.ch/record/2295066engBongi, MAdriani, OAlbergo, SAuditore, LBagliesi, M GBerti, EBigongiari, GBoezio, MBonechi, LBonechi, SBonvicini, VBottai, SBrogi, PCarotenuto, GCassese, ACastellini, GCattaneo, P WCauz, DCumani, PD'Alessandro, RDetti, SFasoli, MGregorio, ALamberto, ALenzi, PMaestro, PMarrocchesi, P SMezzasalma, AMiritello, MMori, NPapini, PPauletta, GRappazzo, G FRappoldi, ARicciarini, SSpillantini, PStarodubtsev, OSulaj, ATiberio, ATrifiro, ATrimarchi, MVannuccini, EVedda, AZampa, GZampa, NZerbo, BCALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectorsDetectors and Experimental TechniquesFuture space experiments dedicated to the observation of high-energy gamma and cosmic rays will increasingly rely on a highly performing calorimetry apparatus, and their physics performance will be primarily determined by the geometrical dimensions and the energy resolution of the calorimeter deployed. Thus it is extremely important to optimize its geometrical acceptance, the granularity, and its absorption depth for the measurement of the particle energy with respect to the total mass of the apparatus which is the most important constraint for a space launch. The proposed design tries to satisfy these criteria while staying within a total mass budget of about 1.6 tons. Calocube is a homogeneous calorimeter instrumented with Cesium iodide (CsI) crystals, whose geometry is cubic and isotropic, so as to detect particles arriving from every direction in space, thus maximizing the acceptance, granularity is obtained by filling the cubic volume with small cubic CsI crystals. The total radiation length in any direction is more than adequate for optimal electromagnetic particle identification and energy measurement, whilst the interaction length is at least suficient to allow a precise reconstruction of hadronic showers. Optimal values for the size of the crystals and spacing among them have been studied. The design forms the basis of a three-year R&D; activity which has been approved and financed by INFN. An overall description of the system, as well as results from preliminary tests on particle beams will be described.oai:inspirehep.net:13448822015
spellingShingle Detectors and Experimental Techniques
Bongi, M
Adriani, O
Albergo, S
Auditore, L
Bagliesi, M G
Berti, E
Bigongiari, G
Boezio, M
Bonechi, L
Bonechi, S
Bonvicini, V
Bottai, S
Brogi, P
Carotenuto, G
Cassese, A
Castellini, G
Cattaneo, P W
Cauz, D
Cumani, P
D'Alessandro, R
Detti, S
Fasoli, M
Gregorio, A
Lamberto, A
Lenzi, P
Maestro, P
Marrocchesi, P S
Mezzasalma, A
Miritello, M
Mori, N
Papini, P
Pauletta, G
Rappazzo, G F
Rappoldi, A
Ricciarini, S
Spillantini, P
Starodubtsev, O
Sulaj, A
Tiberio, A
Trifiro, A
Trimarchi, M
Vannuccini, E
Vedda, A
Zampa, G
Zampa, N
Zerbo, B
CALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectors
title CALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectors
title_full CALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectors
title_fullStr CALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectors
title_full_unstemmed CALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectors
title_short CALOCUBE: an approach to high-granularity and homogenous calorimetry for space based detectors
title_sort calocube: an approach to high-granularity and homogenous calorimetry for space based detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1742-6596/587/1/012029
http://cds.cern.ch/record/2295066
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