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Linac-based positron source and generation of a high density positronium cloud for the GBAR experiment

The aim of the recently approved GBAR (Gravitational Behaviour of Antihydrogen at Rest) experiment is to measure the acceleration of neutral antihydrogen atoms in the gravitational field of the Earth. The experimental scheme requires a high density positronium cloud as a target for antiprotons, prov...

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Autores principales: Liszkay, L, Comini, P, Corbel, C, Debu, P, Dupré, P, Grandemange, P, Pérez, P, Rey, J -M, Ruiz, N, Sacquin, Y
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/443/1/012006
http://cds.cern.ch/record/2861318
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author Liszkay, L
Comini, P
Corbel, C
Debu, P
Dupré, P
Grandemange, P
Pérez, P
Rey, J -M
Ruiz, N
Sacquin, Y
author_facet Liszkay, L
Comini, P
Corbel, C
Debu, P
Dupré, P
Grandemange, P
Pérez, P
Rey, J -M
Ruiz, N
Sacquin, Y
author_sort Liszkay, L
collection CERN
description The aim of the recently approved GBAR (Gravitational Behaviour of Antihydrogen at Rest) experiment is to measure the acceleration of neutral antihydrogen atoms in the gravitational field of the Earth. The experimental scheme requires a high density positronium cloud as a target for antiprotons, provided by the Antiproton Decelerator (AD) – Extra Low Energy Antiproton Ring (ELENA) facility at CERN. We introduce briefly the experimental scheme and present the ongoing efforts at IRFU CEA Saclay to develop the positron source and the positron-positronium converter, which are key parts of the experiment. We have constructed a slow positron source in Saclay, based on a low energy (4.3 MeV) linear electron accelerator (linac). By using an electron target made of tungsten and a stack of thin W meshes as positron moderator, we reached a slow positron intensity that is comparable with that of 22Na-based sources using a solid neon moderator. The source feeds positrons into a high field (5 T) Penning-Malmberg trap. Intense positron pulses from the trap will be converted to slow ortho-positronium (o-Ps) by a converter structure. Mesoporous silica films appear to date to be the best candidates as converter material. We discuss our studies to find the optimal pore configuration for the positron-positronium converter.
id cern-2861318
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-28613182023-06-09T20:08:09Zdoi:10.1088/1742-6596/443/1/012006http://cds.cern.ch/record/2861318engLiszkay, LComini, PCorbel, CDebu, PDupré, PGrandemange, PPérez, PRey, J -MRuiz, NSacquin, YLinac-based positron source and generation of a high density positronium cloud for the GBAR experimentAccelerators and Storage RingsThe aim of the recently approved GBAR (Gravitational Behaviour of Antihydrogen at Rest) experiment is to measure the acceleration of neutral antihydrogen atoms in the gravitational field of the Earth. The experimental scheme requires a high density positronium cloud as a target for antiprotons, provided by the Antiproton Decelerator (AD) – Extra Low Energy Antiproton Ring (ELENA) facility at CERN. We introduce briefly the experimental scheme and present the ongoing efforts at IRFU CEA Saclay to develop the positron source and the positron-positronium converter, which are key parts of the experiment. We have constructed a slow positron source in Saclay, based on a low energy (4.3 MeV) linear electron accelerator (linac). By using an electron target made of tungsten and a stack of thin W meshes as positron moderator, we reached a slow positron intensity that is comparable with that of 22Na-based sources using a solid neon moderator. The source feeds positrons into a high field (5 T) Penning-Malmberg trap. Intense positron pulses from the trap will be converted to slow ortho-positronium (o-Ps) by a converter structure. Mesoporous silica films appear to date to be the best candidates as converter material. We discuss our studies to find the optimal pore configuration for the positron-positronium converter.oai:cds.cern.ch:28613182013
spellingShingle Accelerators and Storage Rings
Liszkay, L
Comini, P
Corbel, C
Debu, P
Dupré, P
Grandemange, P
Pérez, P
Rey, J -M
Ruiz, N
Sacquin, Y
Linac-based positron source and generation of a high density positronium cloud for the GBAR experiment
title Linac-based positron source and generation of a high density positronium cloud for the GBAR experiment
title_full Linac-based positron source and generation of a high density positronium cloud for the GBAR experiment
title_fullStr Linac-based positron source and generation of a high density positronium cloud for the GBAR experiment
title_full_unstemmed Linac-based positron source and generation of a high density positronium cloud for the GBAR experiment
title_short Linac-based positron source and generation of a high density positronium cloud for the GBAR experiment
title_sort linac-based positron source and generation of a high density positronium cloud for the gbar experiment
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1088/1742-6596/443/1/012006
http://cds.cern.ch/record/2861318
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