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Studies on sampling and homogeneous dual readout calorimetry with meta-crystals

The meta-crystals concept is an approach that consists of using both undoped and properly doped heavy crystal fibers of identical material as the active medium of a calorimeter. The undoped fibers behave as Cherenkov radiators while the doped ones behave as scintillators. A dual readout calorimeter...

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Detalles Bibliográficos
Autores principales: Mavromanolakis, G, Auffray, E, Lecoq, P
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/6/10/P10012
http://cds.cern.ch/record/1447146
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author Mavromanolakis, G
Auffray, E
Lecoq, P
author_facet Mavromanolakis, G
Auffray, E
Lecoq, P
author_sort Mavromanolakis, G
collection CERN
description The meta-crystals concept is an approach that consists of using both undoped and properly doped heavy crystal fibers of identical material as the active medium of a calorimeter. The undoped fibers behave as Cherenkov radiators while the doped ones behave as scintillators. A dual readout calorimeter can be built with its sensitive volume composed of a mixture of both types of crystals. In addition if the calorimeter is adequately finely segmented it can also function as a particle flow calorimeter at the same time. In this way one could possibly combine the advantages of both the particle flow concept and the dual readout scheme. We discuss the approach of dual readout calorimetry with meta-crystals made of Lutetium Aluminium Garnet (LuAG). We brie fly present studies on the material development and first testbeam activities and then focus on performance expectation studies based on simulation. We discuss in more detail the results from generic systematic scannings of the design parameters of a dual readout calorimeter. The parameters under study include the transverse and longitudinal granularity, the sampling frequency and readout fraction of the scintillation and the Cherenkov signals, the total calorimeter length, the mixture of homogeneous and sampling dual readout components, their corresponding composition etc. We close with a brief outlook on open issues and further R&D needed to proceed from an ideal conceptual case to the design of a realistic detector.
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institution Organización Europea para la Investigación Nuclear
publishDate 2011
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spelling cern-14471462019-09-30T06:29:59Zdoi:10.1088/1748-0221/6/10/P10012http://cds.cern.ch/record/1447146Mavromanolakis, GAuffray, ELecoq, PStudies on sampling and homogeneous dual readout calorimetry with meta-crystalsDetectors and Experimental TechniquesThe meta-crystals concept is an approach that consists of using both undoped and properly doped heavy crystal fibers of identical material as the active medium of a calorimeter. The undoped fibers behave as Cherenkov radiators while the doped ones behave as scintillators. A dual readout calorimeter can be built with its sensitive volume composed of a mixture of both types of crystals. In addition if the calorimeter is adequately finely segmented it can also function as a particle flow calorimeter at the same time. In this way one could possibly combine the advantages of both the particle flow concept and the dual readout scheme. We discuss the approach of dual readout calorimetry with meta-crystals made of Lutetium Aluminium Garnet (LuAG). We brie fly present studies on the material development and first testbeam activities and then focus on performance expectation studies based on simulation. We discuss in more detail the results from generic systematic scannings of the design parameters of a dual readout calorimeter. The parameters under study include the transverse and longitudinal granularity, the sampling frequency and readout fraction of the scintillation and the Cherenkov signals, the total calorimeter length, the mixture of homogeneous and sampling dual readout components, their corresponding composition etc. We close with a brief outlook on open issues and further R&D needed to proceed from an ideal conceptual case to the design of a realistic detector.oai:cds.cern.ch:14471462011
spellingShingle Detectors and Experimental Techniques
Mavromanolakis, G
Auffray, E
Lecoq, P
Studies on sampling and homogeneous dual readout calorimetry with meta-crystals
title Studies on sampling and homogeneous dual readout calorimetry with meta-crystals
title_full Studies on sampling and homogeneous dual readout calorimetry with meta-crystals
title_fullStr Studies on sampling and homogeneous dual readout calorimetry with meta-crystals
title_full_unstemmed Studies on sampling and homogeneous dual readout calorimetry with meta-crystals
title_short Studies on sampling and homogeneous dual readout calorimetry with meta-crystals
title_sort studies on sampling and homogeneous dual readout calorimetry with meta-crystals
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/6/10/P10012
http://cds.cern.ch/record/1447146
work_keys_str_mv AT mavromanolakisg studiesonsamplingandhomogeneousdualreadoutcalorimetrywithmetacrystals
AT auffraye studiesonsamplingandhomogeneousdualreadoutcalorimetrywithmetacrystals
AT lecoqp studiesonsamplingandhomogeneousdualreadoutcalorimetrywithmetacrystals