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The experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and tests

Silicon/germanium flat/bent crystals are thin devices able to efficiently deflect charged particle GeV-energy beams up to a few hundreds of μrad; moreover, high intensity photons can be efficiently produced in the so-called Multi-Volume Reflection (MVR) and Multiple Volume Reflections in One Crystal...

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Detalles Bibliográficos
Autores principales: Lietti, D, Backe, H, Bagli, E, Bandiera, L, Berra, A, Carturan, S, De Salvador, D, Germogli, G, Guidi, V, Lauth, W, Mazzolari, A, Prest, M, Vallazza, E
Lenguaje:eng
Publicado: AIP 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1063/1.4916367
http://cds.cern.ch/record/2711537
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author Lietti, D
Backe, H
Bagli, E
Bandiera, L
Berra, A
Carturan, S
De Salvador, D
Germogli, G
Guidi, V
Lauth, W
Mazzolari, A
Prest, M
Vallazza, E
author_facet Lietti, D
Backe, H
Bagli, E
Bandiera, L
Berra, A
Carturan, S
De Salvador, D
Germogli, G
Guidi, V
Lauth, W
Mazzolari, A
Prest, M
Vallazza, E
author_sort Lietti, D
collection CERN
description Silicon/germanium flat/bent crystals are thin devices able to efficiently deflect charged particle GeV-energy beams up to a few hundreds of μrad; moreover, high intensity photons can be efficiently produced in the so-called Multi-Volume Reflection (MVR) and Multiple Volume Reflections in One Crystal (MVROC) conditions. In the last years, the research interest in this field has moved to the dynamic studies of light negative leptons in the low energy range: the possibility to deflect negative particles and to produce high intensity γ sources via the coherent interactions with crystals in the sub-GeV energy range has been proved by the ICE-RAD (Interaction in Crystals for Emission of RADiation) Collaboration at the MAinzer MIkrotron (MAMI, Germany). This paper describes the setup used by the ICE-RAD experiment for the crystals characterization (both in terms of deflection and radiation emission properties): a high precision goniometer is used to align the crystals with the incoming beam, while a silicon based profilometer and an inorganic scintillator reconstruct, respectively, the particle position and the photon spectra after the samples. The crystals manufacturing process and their characterization, the silicon profilometer commissioning at the CERN PS T9 beamline, and the commissioning of the whole setup installed at MAMI are presented.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
publisher AIP
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spelling oai-inspirehep.net-13663462020-03-02T15:14:18Zdoi:10.1063/1.4916367http://cds.cern.ch/record/2711537engLietti, DBacke, HBagli, EBandiera, LBerra, ACarturan, SDe Salvador, DGermogli, GGuidi, VLauth, WMazzolari, APrest, MVallazza, EThe experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and testsDetectors and Experimental TechniquesSilicon/germanium flat/bent crystals are thin devices able to efficiently deflect charged particle GeV-energy beams up to a few hundreds of μrad; moreover, high intensity photons can be efficiently produced in the so-called Multi-Volume Reflection (MVR) and Multiple Volume Reflections in One Crystal (MVROC) conditions. In the last years, the research interest in this field has moved to the dynamic studies of light negative leptons in the low energy range: the possibility to deflect negative particles and to produce high intensity γ sources via the coherent interactions with crystals in the sub-GeV energy range has been proved by the ICE-RAD (Interaction in Crystals for Emission of RADiation) Collaboration at the MAinzer MIkrotron (MAMI, Germany). This paper describes the setup used by the ICE-RAD experiment for the crystals characterization (both in terms of deflection and radiation emission properties): a high precision goniometer is used to align the crystals with the incoming beam, while a silicon based profilometer and an inorganic scintillator reconstruct, respectively, the particle position and the photon spectra after the samples. The crystals manufacturing process and their characterization, the silicon profilometer commissioning at the CERN PS T9 beamline, and the commissioning of the whole setup installed at MAMI are presented.AIPoai:inspirehep.net:13663462015
spellingShingle Detectors and Experimental Techniques
Lietti, D
Backe, H
Bagli, E
Bandiera, L
Berra, A
Carturan, S
De Salvador, D
Germogli, G
Guidi, V
Lauth, W
Mazzolari, A
Prest, M
Vallazza, E
The experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and tests
title The experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and tests
title_full The experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and tests
title_fullStr The experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and tests
title_full_unstemmed The experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and tests
title_short The experimental setup of the Interaction in Crystals for Emission of RADiation collaboration at Mainzer Mikrotron: Design, commissioning, and tests
title_sort experimental setup of the interaction in crystals for emission of radiation collaboration at mainzer mikrotron: design, commissioning, and tests
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1063/1.4916367
http://cds.cern.ch/record/2711537
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