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Irradiation Facilities and Irradiation Methods for High Power Target

High Power Target systems are key elements in future neutrino and other rare particle production in accelerators. These systems transform an intense source of protons into secondary particles of interest to enable new scientific discoveries. As beam intensity and energies increase, target systems fa...

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Detalles Bibliográficos
Autores principales: Pellemoine, F., Barbier, C., Sun, Y., Ammigan, K., Bidhar, S., Zwaska, B., McClintock, D., Taller, S., Winder, D., Cutler, C.S., Kim, D., Chiu, Y., Freer, M., Wheldon, C., Gottberg, A., Pamies, F. Boix, Calviani, M., Charitonidis, N., Garcia Alia, R., Ravotti, F., Danzeca, S., Bernardes, A.P., Moncoffre, N., Meigo, S., Ishida, T., Dai, Y., Couet, A., Kriewaldt, K., Moorhead, M., Was, G.S., Toader, O., Naab, F., Wang, P., Woodley, D., Getto, E., Raiman, S., Grygiel, C., Monnet, I., Alessi, A., Senor, D., Casella, A.M.
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2805602
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author Pellemoine, F.
Barbier, C.
Sun, Y.
Ammigan, K.
Bidhar, S.
Zwaska, B.
McClintock, D.
Taller, S.
Winder, D.
Cutler, C.S.
Kim, D.
Chiu, Y.
Freer, M.
Wheldon, C.
Gottberg, A.
Pamies, F. Boix
Calviani, M.
Charitonidis, N.
Garcia Alia, R.
Ravotti, F.
Danzeca, S.
Bernardes, A.P.
Moncoffre, N.
Meigo, S.
Ishida, T.
Dai, Y.
Couet, A.
Kriewaldt, K.
Moorhead, M.
Was, G.S.
Toader, O.
Naab, F.
Wang, P.
Woodley, D.
Getto, E.
Raiman, S.
Grygiel, C.
Monnet, I.
Alessi, A.
Senor, D.
Casella, A.M.
author_facet Pellemoine, F.
Barbier, C.
Sun, Y.
Ammigan, K.
Bidhar, S.
Zwaska, B.
McClintock, D.
Taller, S.
Winder, D.
Cutler, C.S.
Kim, D.
Chiu, Y.
Freer, M.
Wheldon, C.
Gottberg, A.
Pamies, F. Boix
Calviani, M.
Charitonidis, N.
Garcia Alia, R.
Ravotti, F.
Danzeca, S.
Bernardes, A.P.
Moncoffre, N.
Meigo, S.
Ishida, T.
Dai, Y.
Couet, A.
Kriewaldt, K.
Moorhead, M.
Was, G.S.
Toader, O.
Naab, F.
Wang, P.
Woodley, D.
Getto, E.
Raiman, S.
Grygiel, C.
Monnet, I.
Alessi, A.
Senor, D.
Casella, A.M.
author_sort Pellemoine, F.
collection CERN
description High Power Target systems are key elements in future neutrino and other rare particle production in accelerators. These systems transform an intense source of protons into secondary particles of interest to enable new scientific discoveries. As beam intensity and energies increase, target systems face significant challenges. Radiation damages and thermal shocks in target materials were identified as the leading cross-cutting challenges of high-power target facilities. Target material R&D to address these challenges are essential to enable and ensure reliable operation of future-generation accelerators. Irradiation facilities and alternative methods are critical to provide a full support of material R&D and better address these critical challenges.
id cern-2805602
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28056022023-06-28T08:07:10Zhttp://cds.cern.ch/record/2805602engPellemoine, F.Barbier, C.Sun, Y.Ammigan, K.Bidhar, S.Zwaska, B.McClintock, D.Taller, S.Winder, D.Cutler, C.S.Kim, D.Chiu, Y.Freer, M.Wheldon, C.Gottberg, A.Pamies, F. BoixCalviani, M.Charitonidis, N.Garcia Alia, R.Ravotti, F.Danzeca, S.Bernardes, A.P.Moncoffre, N.Meigo, S.Ishida, T.Dai, Y.Couet, A.Kriewaldt, K.Moorhead, M.Was, G.S.Toader, O.Naab, F.Wang, P.Woodley, D.Getto, E.Raiman, S.Grygiel, C.Monnet, I.Alessi, A.Senor, D.Casella, A.M.Irradiation Facilities and Irradiation Methods for High Power Targetphysics.acc-phAccelerators and Storage RingsHigh Power Target systems are key elements in future neutrino and other rare particle production in accelerators. These systems transform an intense source of protons into secondary particles of interest to enable new scientific discoveries. As beam intensity and energies increase, target systems face significant challenges. Radiation damages and thermal shocks in target materials were identified as the leading cross-cutting challenges of high-power target facilities. Target material R&D to address these challenges are essential to enable and ensure reliable operation of future-generation accelerators. Irradiation facilities and alternative methods are critical to provide a full support of material R&D and better address these critical challenges.arXiv:2203.08239FERMILAB-CONF-22-124-ADoai:cds.cern.ch:28056022022-03-15
spellingShingle physics.acc-ph
Accelerators and Storage Rings
Pellemoine, F.
Barbier, C.
Sun, Y.
Ammigan, K.
Bidhar, S.
Zwaska, B.
McClintock, D.
Taller, S.
Winder, D.
Cutler, C.S.
Kim, D.
Chiu, Y.
Freer, M.
Wheldon, C.
Gottberg, A.
Pamies, F. Boix
Calviani, M.
Charitonidis, N.
Garcia Alia, R.
Ravotti, F.
Danzeca, S.
Bernardes, A.P.
Moncoffre, N.
Meigo, S.
Ishida, T.
Dai, Y.
Couet, A.
Kriewaldt, K.
Moorhead, M.
Was, G.S.
Toader, O.
Naab, F.
Wang, P.
Woodley, D.
Getto, E.
Raiman, S.
Grygiel, C.
Monnet, I.
Alessi, A.
Senor, D.
Casella, A.M.
Irradiation Facilities and Irradiation Methods for High Power Target
title Irradiation Facilities and Irradiation Methods for High Power Target
title_full Irradiation Facilities and Irradiation Methods for High Power Target
title_fullStr Irradiation Facilities and Irradiation Methods for High Power Target
title_full_unstemmed Irradiation Facilities and Irradiation Methods for High Power Target
title_short Irradiation Facilities and Irradiation Methods for High Power Target
title_sort irradiation facilities and irradiation methods for high power target
topic physics.acc-ph
Accelerators and Storage Rings
url http://cds.cern.ch/record/2805602
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