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Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers

The Baby MIND neutrino particle detector was installed at J-PARC in Tokai Japan in February 2018 and commissioned with first neutrino beam a few weeks later. It is instrumented with 3,996 Hamamatsu MPPCs type S12571-025C. A full readout electronics chain was developed to extract energy deposition an...

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Detalles Bibliográficos
Autores principales: Basille, O, Blondel, A, Benoit, P, Bogomilov, M, Bron, S, Cadoux, F, Chikuma, N, Douqa, D, Dudarev, A, Ekelöf, T, Favre, Y, Fedotov, S, Hallsjö, S P, Ichikawa, A, Khabibullin, M, Khotyantsev, A, Kostin, A, Kudenko, Y, Mefodiev, A, Minamino, A, Mineev, O, Mitev, G, Nessi, M, Nicola, L, Noah, E, Parsa, S, Rayner, M, Sanchez, F, Simion, P, Soler, F J P, Suvorov, S, Kate, H Ten, Tsenov, R, Vankova-Kirilova, G, Yasutome, K, Yershov, N
Lenguaje:eng
Publicado: JPS 2019
Materias:
Acceso en línea:https://dx.doi.org/10.7566/JPSCP.27.011011
http://cds.cern.ch/record/2727525
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author Basille, O
Blondel, A
Benoit, P
Bogomilov, M
Bron, S
Cadoux, F
Chikuma, N
Douqa, D
Dudarev, A
Ekelöf, T
Favre, Y
Fedotov, S
Hallsjö, S P
Ichikawa, A
Khabibullin, M
Khotyantsev, A
Kostin, A
Kudenko, Y
Mefodiev, A
Minamino, A
Mineev, O
Mitev, G
Nessi, M
Nicola, L
Noah, E
Parsa, S
Rayner, M
Sanchez, F
Simion, P
Soler, F J P
Suvorov, S
Kate, H Ten
Tsenov, R
Vankova-Kirilova, G
Yasutome, K
Yershov, N
author_facet Basille, O
Blondel, A
Benoit, P
Bogomilov, M
Bron, S
Cadoux, F
Chikuma, N
Douqa, D
Dudarev, A
Ekelöf, T
Favre, Y
Fedotov, S
Hallsjö, S P
Ichikawa, A
Khabibullin, M
Khotyantsev, A
Kostin, A
Kudenko, Y
Mefodiev, A
Minamino, A
Mineev, O
Mitev, G
Nessi, M
Nicola, L
Noah, E
Parsa, S
Rayner, M
Sanchez, F
Simion, P
Soler, F J P
Suvorov, S
Kate, H Ten
Tsenov, R
Vankova-Kirilova, G
Yasutome, K
Yershov, N
author_sort Basille, O
collection CERN
description The Baby MIND neutrino particle detector was installed at J-PARC in Tokai Japan in February 2018 and commissioned with first neutrino beam a few weeks later. It is instrumented with 3,996 Hamamatsu MPPCs type S12571-025C. A full readout electronics chain was developed to extract energy deposition and timing information of tracks left by charged particles from neutrino interactions in the Baby MIND and surrounding structures. Data from particle beam tests at CERN and commissioning at J-PARC are presented, to illustrate how the electronics readout architecture fulfills the physics requirements. A brief description of the adoption of this architecture for planned 60,000 MPPCs of a new 3D fine grained scintillator detector for operation at J-PARC from 2021 is given.
id oai-inspirehep.net-1769124
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
publisher JPS
record_format invenio
spelling oai-inspirehep.net-17691242020-08-09T18:08:58Zdoi:10.7566/JPSCP.27.011011http://cds.cern.ch/record/2727525engBasille, OBlondel, ABenoit, PBogomilov, MBron, SCadoux, FChikuma, NDouqa, DDudarev, AEkelöf, TFavre, YFedotov, SHallsjö, S PIchikawa, AKhabibullin, MKhotyantsev, AKostin, AKudenko, YMefodiev, AMinamino, AMineev, OMitev, GNessi, MNicola, LNoah, EParsa, SRayner, MSanchez, FSimion, PSoler, F J PSuvorov, SKate, H TenTsenov, RVankova-Kirilova, GYasutome, KYershov, NBaby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon PhotomultipliersDetectors and Experimental TechniquesThe Baby MIND neutrino particle detector was installed at J-PARC in Tokai Japan in February 2018 and commissioned with first neutrino beam a few weeks later. It is instrumented with 3,996 Hamamatsu MPPCs type S12571-025C. A full readout electronics chain was developed to extract energy deposition and timing information of tracks left by charged particles from neutrino interactions in the Baby MIND and surrounding structures. Data from particle beam tests at CERN and commissioning at J-PARC are presented, to illustrate how the electronics readout architecture fulfills the physics requirements. A brief description of the adoption of this architecture for planned 60,000 MPPCs of a new 3D fine grained scintillator detector for operation at J-PARC from 2021 is given.JPSoai:inspirehep.net:17691242019
spellingShingle Detectors and Experimental Techniques
Basille, O
Blondel, A
Benoit, P
Bogomilov, M
Bron, S
Cadoux, F
Chikuma, N
Douqa, D
Dudarev, A
Ekelöf, T
Favre, Y
Fedotov, S
Hallsjö, S P
Ichikawa, A
Khabibullin, M
Khotyantsev, A
Kostin, A
Kudenko, Y
Mefodiev, A
Minamino, A
Mineev, O
Mitev, G
Nessi, M
Nicola, L
Noah, E
Parsa, S
Rayner, M
Sanchez, F
Simion, P
Soler, F J P
Suvorov, S
Kate, H Ten
Tsenov, R
Vankova-Kirilova, G
Yasutome, K
Yershov, N
Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers
title Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers
title_full Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers
title_fullStr Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers
title_full_unstemmed Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers
title_short Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers
title_sort baby mind readout electronics architecture for accelerator neutrino particle physics detectors employing silicon photomultipliers
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.7566/JPSCP.27.011011
http://cds.cern.ch/record/2727525
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